AGRIS - International System for Agricultural Science and Technology

Effect of foliar application of Cycocyl, Salicylic Acid and Humic acid on physiological and productivity parameters of potato under water stress conditions

2022

Hadia Issa Hassan


Bibliographic information
Publisher
Tishreen University Faculty of Agriculture Engineering
Other Subjects
Potato; Humic acid; الاجهاد المائي; السيكوسيل; Cycocyl; Salicylic acid; حمض الساليسيلك; حمض الهيوميك
Language
Arabic
Note
References 3. ABBASI, G.H.; AKHTAR, J.; ANWAR-UL-HAQ, M.; ALI, S.; CHEN, Z.H.; MALIK, W. Exogenous potassium differentially mitigates salt stress in tolerant and sensitive maize hybrids. Pak. J. Bot. 2014, 46, 135–146. 4. -ABDELLATIF, Y.M.I; ABDEL-ATI ,Y.Y; ABDEL-MAGEEDT.Y; HASSAN,M.A.M. Effect of Humic Acid on Growth and Productivity of Tomato Plants Under Heat Stress Journal of Horticultural Research, vol,2017, 25(2):pp 59-66. 5. -ABDELRASHEED,G.K ; MAZROU,Y ; OMARA,E.A; OSMAN,S.H; NEHELA,Y; HAFEZ,M.E ;ASMAA ; RADY S.M; ABD EL-MONEIM,D.B.D.A ;ALOWAIESH,F.B ; GOWAYED.M.S .Soil Amendment Using Biochar and Application of K-Humate Enhance the Growth, Productivity, and Nutritional Value of Onion (Allium cepa L.) under Deficit Irrigation Conditions, Plants 2021, 10(12). 6. ABDEL-RAZEK ,M.K.M ; ABEL AZIZ,H.G; AHMED,S.S. The Influence of Applying some Stimulating Agents and Humic Acid on Productivity and Quality of Cassava Plants under Loamy Sandy Soil .Journal of Soil Sciences and Agricultural Engineering Article 6, Volume 10, Issue 10, October 2019, Page 589-595 7. -ABOUEL-KHAIR, E.E.; DALIA A.S. NAWAR AND H.M.E. Ismail Effect of Irrigation Water Quntity and Farmyard Manure on Potato Plant Growth in Sandy Soil. Egypt. J. Agric. Res.,2011, 89 (1). 8. -ABUBAKER, B. M., SHUANG-EN, Y., GUANG-CHENG, S., ALHADI, M. AND ELSIDDIG, A. Effect of Irrigation Levels on the Growth, Yield and Quality of Potato. Bulgarian Journal of Agricultural Science,2014, 20, 303-309. 9. -ABU-ZINADA, I.A., AND K.S. SEKH-ELEID. Humic acid to decrease fertilization rate on potato (Solanum tuberosum L.). American Journal of Agriculture and Forestry,2015, 3(5): 234–238. 10. -AFTAB, T.; MASROOR, M.; KHAN, A.; IDREES, M.; NAEEM, M. Salicylic acid acts as potent enhancer of growth, photosynthesis and artemisinin production in Artemisia annua L. J. Crop Sci. Biotechnol. 2010, 13, 183–188. 11. -AGARWAL ,S AND PANDEY V. AGARWAL, S., PANDEY, V. Antioxidant Enzyme Responses to NaCl Stress in Cassia angustifolia . Biologia Plantarum 48, 555–560 (2004). 12. -AGUIAR,N.O; MEDICI,O.L; OLIVARES,L.F; DOBBSS,B.L;. TORRES-NETTO,A; SILVA,F.S; NOVOTNY,H.E; CANELLAS.P.L.Metabolic profile and antioxidant responses during drought stress recovery in sugarcane treated with humic acids andendophytic diazotrophic bacteria. Volume168, Issue2March 2016,Pages 203-213 13. -AHMADI, S.H.; ANDERSEN, M.N.; PLAUBORG, F.; POULSEN, R.T.; JENSEN, C.R.; SEPASKHAH, A.R.; HANSEN, S. Effects of irrigation strategies and soils on field grown potatoes: Yield and water productivity. Agric. Water Manag. 2010, 97, 1923–1930. 14. -AKSU, G; ALTAY, H. The effects of potassium applications on drought stress in sugar beet. Sugar Tech 2020, 22, 1092–1102. 15. -ALENAZI,M; WAHB-ALLAH,A.M; ABDEL-RAZZAK,S.H; IBRAHIM,A.A AND ABDULLAH ALSADONL .Water Regimes and Humic Acid Application Influences Potato Growth, Yield, Tuber Quality and Water Use Efficiency. American Journal Potato Research .vol,2016, 93.pp 463-473. 16. -AL-HAMDANI, S. A., AL-ZUHAIRY, H. T. H.: Effect of organic, chemical fertilizers and plant density on 2-some growth and yield characteristics of cauliflower Brassica oleracea var. botrytis. .Diyala Agricultural Sciences Journal ,2017,9 (2): 104-114. 17. -ALI, G. Study of the influence of water stress on growth and development of crop plants. International Journal of Pharmaceutical Sciences Review and Research 1,2014, 28–32. 18. -ALICHE, E.B; THEEUWENA,M.J.P.T; OORTWIJN, M; VISSERA,F.G.R. VAN DER LINDEN, C.G .Carbon partitioning mechanisms in POTATO under drought stress.Plant Physiology and Biochemistry,Volume 146, January 2020, Pages 211-219. 19. -AL-Jeboori, K. D., M. Z. K. AL-Mharib, A. Q. Hamdan and A. H. Mahmood. Effect of irrigation intervals and foliar of salicylic acid on growth and yield of potato. Iraq J. Agric. Sci.,2017, 48(1): 242. 20. -AL-KHATEEB,A.S , ABDULLATIF A AL-KHATEEB ,A.A; EL-BELTAGI,S.H; SATTAR,N.M.Genotypic Variation For Drought Tolerance in Three Date Palm (Phoenix Dactylifera L.) Cultivars. Volume 28 – No. 6/2019 pages 4671-4683 21. -AL-SALMANI,H ; AL-BINDAWI,B.The Interfering Effect OF Organic Fertilizer and Water Stress on Some Growth and Yield Characteresistics Of Potatoes.Diyala Journal of Agricultural Sciences. 6 (2),2014,213-224. 22. -ALTUNKAYA,A and GOKMEN,V .Purification and Characterization of Polyphenol Oxidase, Peroxidase and Lipoxygenase from Freshly Cut Lettuce (L. sativa) . Food Technol. Biotechnol. ,2011,49 (2) 249–256 . ISSN 1330-9862 . 23. -ALVA,A.K. Set points for potato irrigation in sandy soils using real-time ,continuous monitoring of soil-water content in soil profile .Journal of Crop Improvement,2008. 21:pp117-137.2008. 24. -AMINIFARD, M.H; AROIEE,M ; AZIZI ,M; NEMATI,H and JAAFAR,E.Z.H. Effect of Humic Acid on Antioxidant Activities and Fruit Quality of Hot Pepper (Capsicum annuum L.). Journal of Herbs, Spices & Medicinal Plants ,2012,Volume 18, Issue 4. 25. -AMOABIN,S. The Effects of Cycocel(CCC) on TomatoUnder Water Stress.Master of Aricultural Science .The University of Adelaide South Australia. 1983.26. -AMONAIMA -DEDE,H; SU,C; YEBOAH ,A; HANG ZHOU ,H; ZHENG , ZHU ,H.D.Growth regulators promote soybean productivity: a review. PeerJ. 2022; 10: e12556 . 28. -ANISIMOV,F,B. potato varieties approved for agriculture and seed potato production. FGNY,2000,148p. (in Russian) 29. -ANOSHEH, H.P; EMAM, Y; ASHRAF, M; FOOLAD, M.R. Exogenous application of salicylic acid and chlormequat chloride alleviates negative effects of drought stress in wheat. Adv. Stud. Biol.,2012, 4(11), 501–520. 30. -ANOSHEH,H; EMAM,Y; KHALIQ,A. Response of cereals to cycocel application. Iran Agricultural Research, 2016, 35(1) ,1-12. 31. -ANSARI, A; RAZMJOO, J; KARIMMOJENI, H. Mycorrhizal colonization and seed treatment with salicylic acid to improve physiological traits and tolerance of flaxseed (Linum usitatissimum L.) plants grown under drought stress. Acta Physiol. Plant.,2016, 38, 34. 32. -APEL ,K; HIRT, H. Reactive Oxygen Species: Metabolism, Oxidative Stress, and Signal Transduction, Annu. Rev. Plant Biol. 2004. 55:373–99 33. -ARAÚJO, P.L; OLIVEIRA,C.R; LANA,Q.M.R; LUZ,Q.M.J; GUIMARÃES,A.P.J AND ALVES,O.E Accumulation of macronutrients and productivity of potato with foliar application of biofertilizer. Int. J. Agric. Nat. Resour. 48(2):70-82. 2021 34. -ARFAN M, ATHAR,R.H AND ASHRAF,M .Does exogenous application of salicylic acid through the rooting medium modulate growth and photosynthetic capacity in two differently adapted spring wheat cultivars under salt stress. J. of Plant Physiology,2007, 164 (6): 685-694. 35. -ASADA,K. The water-water cycle as alternative photon and electron sinks. Philos Trans R Soc Lond B Biol Sci. 2000 Oct 29;355(1402):1419-31. 36. -ASHRAF,M and AKRAM,A.N; ARTECA,N.R and FOOLAD,R.M .'The Physiological, Biochemical and Molecular Roles of Brassinosteroids and Salicylic Acid in Plant2010. 37. -ASHRAF,M. Biotechnological Approach of Improving Plant Salt Tolerance Using Antioxidants as Markers. Biotechnol. Adv. 2009, 27, 84–93. 38. -ATTIA, A.A.M. Physiological studies on some ornamental bulbs [Ph.D. Thesis]. Faculty of Agriculture Kafr El-Sheikh University of Egypt,2004. 39. -AWAD, E. M. M. AND S. A. A. MANSOUR .Growth, yield and quality of potato as affected by some antioxidants. J. Agric. Sci. Mansoura Univ.,2007, 32 (8): 6661-6669. 40. -AZIZ, A., MARTIN-TANGUY, J. & LARHER, F. Plasticity of polyamine metabolism associated with high osmotic stress in rape leaf discs and with ethylene treatment. Plant Growth Regulation ,1997,21, 153–163. 41. -BACON, A.M. Water Use Efficiency in Plant Biology. Department of Biological Sciences University of Lancaster, UK .2009. 42. -BAHAR, A.A; FARIED,N.H; RAZZAQ,K; ULLAH,S; AKHTAR,G; AMIN,M; BASHIR,M; AHMED, N AND FAHAD ,M. WATTOO, SUNNY AHMAR, TALHA JAVED, MANZER H. SIDDIQUI, FERDINANDO BRANCA, AND ELDESSOKY S. DESSOKy. "Potassium-Induced Drought Tolerance of Potato by Improving Morpho-Physiological and Biochemical Attributes" Agronomy ,2021,11, no. 12: 2573.43. -BAJJI, M; LUTTS, S AND KINET, J.M. Water deficit effects on solute contribution to osmotic adjustement as a function of leaf aging in three durum wheat (Triticum durum Desf.) cultivars performing differently in arid conditions. Plant Science.,2001, 160:Issue 4,pp 669-681. 44. -BALDET ,P; BRES, C; OKABE ,Y;MAUXION, J.P; JUST ,D; BOURNONVILLE ,C; ROTHAN, C .Investigating the role of vitamin C in tomato through TILLING identification of ascorbate-deficient tomato mutants. Plant Biotechnology,2013, 30, 309–314. 47. -BARRS, H.D, and WEATHERLEY, P.E. A Re-Examination of the Relative Turgidity Techniques for Estimating Water Deficits in Leaves. Australian Journal of Biological Sciences,1962, 15, 413-428. 48. -BARZNJY, L. G. K ; ALLAWI, M. M; MAHOOD, N. A. Effect of different irrigation intervals and treatments on yield quantity and quality of potato (Solanum tuberosum L.) under field conditions in Sulaimani, Iraqi Kurdistan Region, Applied Ecology And Environmental Research 17(6),2019,14787-14804. 49. -BATES, L.S., R.P. WALDREN, AND I.D. TEARE. Rapid determination of free proline for water-stress studies. Plant Soil ,1973,39:205–207. 50. -BATOOL,T ; ALI ,S ; MAHMOUD, SELEIMAN,F; NAVEED,H.N; ALI,A; AHMED,K; ABID,M;RIZWAN,M ;SHAHID,R.M; ALOTAIBI,M .M; AL-ASHKAR, I AND MUBUSHAR,M. Plant growth promoting rhizobacteria alleviates drought stress in potato in response to suppressive oxidative stress and antioxidant enzymes activities.Sci Rep. 2020; 10: 16975. 51. –BENAVIDES, M.P; MARCONI, P.L; GALLEGO, S.M; COMBA, M.E;TOMARO, M.L Relationship between antioxidant defense system and salt tolerance in Solanum tuberosum. Aust J Plant Physiol ,2000,27: 273-8. 52. -BHTTARAI,P .Effects of plant growth regulators on growth and yield of pre-basic seed potato production under glasshouse condition.SAARC Journal of Agriculture 2017(1):149-160. 53. -BANDURSKA,H; STROIŃSKI,A .The effect of salicylic acid on barley response to water deficit . Acta Physiologial Plantarum. Vol. 27. No. 3B. 2005: 379-386. 54. -BARHOUMI, Z; DJEBALI, W.; SMAOUI, A.; CHAÏBI, W.; ABDELLY, C. Contribution of NaCl excretion to salt resistance of Aeluropus littoralis (Willd) Parl. J. Plant Physiol. 2007, 164, 842–850. 55. -BLUM, A. AND EBERCON,A. Cell Membrane Stability as a Measure of Drought and Heat Tolerance in Wheat. Volume21, Issue1 January–February1981,Pages 43-47. 56. -BLUM,A.(2009).Effective use of water (EUW) and not water-use efficiency(WUE) is the target of crop yield improvement under drought stress. FieldCropsRes. 112,119–123.doi:10.1016/j.fcr.2009.03.009. 57. -BOUKHARI, M.E.M.E.; BARAKATE, M.; BOUHIA, Y.; LYAMLOULI, K. Trends in Seaweed Extract Based Biostimulants: Manufacturing Process and Beneficial Effect on Soil-Plant Systems. Plants 2020, 9, 359. 58. -BOUZERZOUR, H AND BENMAHAMMED, A. Variation in Early Growth, Canopy Temperature, Translocation and Yield of Four Durum Wheat (Triticum durum Desf.) Genotypes under Semi Arid Conditions. Jordan Journal of Agricultural Sciences, Volume 5, No.2, 200959. -BRUNNER, I., HERZOG, C., DAWES, M.A., AREND, M., SPERISEN, C. How tree roots respond to drought. Front. Plant Sci.2015, 6, 547. 60. -BULGARI, R.; FRANZONI, G; FERRANTE, A. Biostimulants Application in Horticultural Crops under Abiotic Stress Conditions. Agronomy 2019, 9, 306. 61. -BURGOS,A ;MEDINA, RDIFRANCO,V; MROGINSKI,L.R AND CENOZE,P. Effects of chlorocholine chloride and paclobutrazol on cassava (Manihot esculenta Crantz cv. Rocha) plant growth and tuberous root quality. Agriscienta, 2012, VOL. XXIX: 51-58. 62. -CECCHINI,N.M;MONTEOLIVA,M.I and ALVAREZ,M.E.Proline dehydrogenase contributes to pathogen defensein Arabidopsis. PlantPhysiol. 155,2011, 1947–1959. 63. -CHANG, D.C; JIN, Y.I; NAM, J.H; CHEON, C.G; CHO, J.H; KIM, S.J; YU, H.-S. Early Drought Effect on Canopy Development and Tuber Growth of Potato Cultivars with Different Maturities. Field Crops Res. 2018, 215, 156–162. 64. -CHAVES, M . Water stress in the regulation of photosynthesis in the field. Annals of Botany ,2002,89: 907–916. 65. -CHAVES,M.M.,MAROCO,J.P.,ANDPEREIRA,J.S.Understanding plant responses to drought-from – genes to the whole plant. Funct.PlantBiol.2003, 30, 239264. 66. -CHEN, Y. AND AVAID,T. Effect of humic substances on plant growth. American Society of Agronomy and Soil Science (eds) 1990:PP. 161-186. 67. -CHEN, Z.L.; LI, X.M.; ZHANG, L.H. Effect of salicylic acid pretreatment on drought stress response of zoysiagrass (Zoysia japonica). Russ. J. Plant Physiol. 2014, 61, 619–625. 68. -CHEN,W.P; LI,H.P ; CHEN,T.H.Glycinebetaine increase chilling tolerance and reduce chilling-induced lipid peroxidation in Zea mays L. Plant. Cell and Environment,2000, 23: 609–618. 69. -COSTA, L.D; VEDOVE.,G.D;G. GIANQUINTOI.,G; GIOVANARDI ,R AND PERESSOTTI.A. Yield, water use efficiency, and nitrogen uptake in potato: Infl uence of drought stress. Potato Res,1997, 40:19–34. 70. -CRISTINA,G.B; PAUNESCU,D; POPA,A AND ANDREEA,B .'Changes of Some Antioxidant Enzyme Activities in Leaves of Drought Tolerant Varieties of Wheat from Oltenia During Vegetation Stages', Bulletin UASVM, Agriculture, 65 (2008), 30-33. 71. CAKMAK, I. Enrichment of cereal grains with zinc: Agronomic or genetic biofortification? Plant Soil. 2008, 302, 1–17. 72. -DĄBROWSKI, P., BACZEWSKA-DĄBROWSKA, A.H; KALAJI, H.M; GOLTSEV, V; PAUNOV, M; RAPACZ, M; WÓJCIK-JAGŁA, M; PAWLUŚKIEWICZ, B; BĄBA, W. AND BRESTIC, M. Exploration of chlorophyll a fluorescence and plant gas exchange parameters as indicators of drought tolerance in perennial ryegrass. Sensors, 19(12),2019, 2736. 73. -DACOSTA, M and HUANG, B. Changes in carbon partitioning and accumulation patterns during Drought and Recovery for Colonial Pentgrass Creeping Bentgrass,and velvet Bentgrass.J.AMER.SOC.HORT.SCI.131(4):484-490.2006. 74. -DAT J, VANDENABEELE S, VRANOVÁ E, VAN MONTAGU M, INZÉ D AND VAN BREUSEGEM F. Dual action of the active oxygen species during plant stress responses. Cellular and Molecular Life Sciences,2000, 57: 779-79575. -DAVIES,W.J AND ZHANG,J.H .Root signals and the regulation of growth and development of plants in drying soil. Annu.Rev.PlantPhysiol.PlantMol. Biol. 42,1991,55–76. 76. -DAVIS, T.D. AND E.A. CURRY. Chemical regulation of vegetative growth. Critical Reviewsin Plant Science,1991, 10:2 , 151-188. 77. -DEBLONDE P. M. K., LEDENT J. F. (2001). Effects of moderate drought conditions on green leaf number, stem height, leaf length and tuber yield of potato cultivars. Eur. J. Agron. 14 31–41. 10.1016/S1161-0301(00)00081-2 78. -DEMIDCHIK,V ; CUIN,A.T, SVISTUNENKO,D; SMITH,J.S ; MILLER,J.A; SHABALA,S; SOKOLIK,A AND YURIN,V. Arabidopsis root K+-efflux conductance activated by hydroxyl radicals: single-channel properties, genetic basis and involvement in stress-induced cell death. Journal of Cell Science · 2010, 123, 1468-1479. 79. -DEMIDCHIK,V ; STRALTSOVA1 ,D; MEDVEDEV,M.S , POZHVANOV,A.G , SOKOLIK,A AND YURIN,V. Stress-induced electrolyte leakage: the role of K+ -permeable channels and involvement in programmed cell death and metabolic adjustment. Journal of Experimental Botany, Vol. 65, No. 5, pp. 1259–1270, 2014 80. -DEMPSEY, D. A.,A.C, VLOT.,M.C, WILDERMUTH, AND D.F, KLESSIG. (2011). Salicylic acid biosynthesis and metabolism. Arabidopsis Book v 9, e 0156. 81. -DESOKY, E. S.M; ELSAYED, A.I.; MERWAD, A.-R.M.; RADY, M.M. Stimulating antioxidant defenses, antioxidant gene expression, and salt tolerance in Pisum sativum seedling by pretreatment using licorice root extract (LRE) as an organic biostimulant. Plant Physiol. Biochem. 2019, 142, 292–302. 82. -DESOKY, E.-S.M.; MANSOUR, E.; YASIN, M.A.; El SOBKY, E. S.E; RADY, M.M. Improvement of drought tolerance in five different cultivars of Vicia faba with foliar application of ascorbic acid or silicon. Span. J. Agric. Res. 2020, 18, 16. 83. -DESOKY, E.-S.M; SELEM, E; ABO EL-MAATI, M.F; HASSN, A.A.S.A.; BELAL, H.E.E.; RADY, M.M.; AL-HARBI, M.S.; ALI, E.F. Foliar Supplementation of Clove Fruit Extract and Salicylic Acid Maintains the Performance and Antioxidant Defense System of Solanum tuberosum L. under Deficient Irrigation Regimes. Horticulturae 2021, 7, 435. 84. -DEVOS, C.H.R. AND SCHAT, H. Free radicles and heavy metal tolerance. In: J. Rozema and J. Verkliej, (Eds.), Ecological response to environmental stress. The Netherlands Kluwer Academic Publishers ,1981, pp. 22-30. 85. -DJAMAN, K.; IRMAK, S.; KOUDAHE, K.; ALLEN, S. Irrigation Management in Potato (Solanum tuberosum L.) Production: A Review.Sustainability 2021, 13, 1504. 86. -DONG, T; PARK, Y; HWANG, I. Abscisic acid: Biosynthesis, inactivation, homoeostasis and signalling. Essays Biochem. 2015;58:29-48. doi: 10.1042/bse0580029 87. -DUBOIS, M., GILLES,K.A; HAMILTON,K.J; REBERS,A.P AND SMITH,F. Colorimetric method for determination of sugars and related substances. Anal. Chem.1956 28:350–356. 88. -Dumbroff E.B, et Marshal J.G., (1999). Turgor regulation via cell wall adjustment in while spruce. Plant. Physiol, 119: 313-32089. -DUNCAN B, D.Multiple range and multiple F-test Biometricalf. 11,(1955),1- 42. 90. -DZIUGIEŁ,T, AND WADAS,W . Possibility of increasing early crop potato yield with foliar application of seaweed extracts and humic acids. Journal of Central European Agriculture, 2020, 21(2), p.300-310. 91. - BRENDA. EC 1.11.1.6 - CATALASE. The Comprehensive Enzyme Information System. Department of Bioinformatics and Biochemistry, Technische Universität Braunschweig .Retrieved 2009-05-26. 92. -EI-FOULY,M.M . Beneficial Effects Of Chlormequat (CCC) on Root Crops Under Egyption Field Conditions, Botany Laboratory, National Research Centre, Calro-Dokkl, Egypt.1970.pp:104-105. 93. -EL-GHAMRY A.M; ABD EL-HAI K.M; GHONEEM K.M. Amino and humic acids promote growth, yield and disease resistance of faba bean cultivated in clayey soil. Australian Journal of Basic and Applied Sciences 3,2009, 731–739. 94. -EL-GHAMRY, A.M., EL-SHIKHA,M.D. Effects of different irrigation systems and nitrogen fertilizer sources on potato growth and yield. Journal Agriculture Science, 29,2004, 6393-6410. 95. -ELHANI, S.; HADDADI, M.; CSKVRI, E; ZANTAR, S.; HAMIM, A.; VILLلNYI, V.; DOUAIK, A.; BNFALVI, Z. Effects of partial root-zone drying and deficit irrigation on yield, irrigation water-use efficiency and some potato (Solanum tuberosum L.) quality traits under glasshouse conditions. Agricultural Water Management ,Volume 224, 1 September 2019, 105745 96. -EL-TAYEB, M.A. Differential response of two Vicia faba cultivars to drought: Growth, pigments, lipid peroxidation, organic solutes, catalase and peroxidase activity. Acta Agronomica Hungarica. 2006; 54: 25–37. 97. -EL-TOHAMY, H; MAHER,E; BADR,M.A.A; GRUDA,N. Effect Of Exogenous Salicylic Acid On The Response Of Snap Bean (Phaseolus vulgaris L.) And Jerusalem Artichoke (Helianthus tuberosus L.) To Drought Stress. Acta Sci. Pol. Hortorum Cultus, 17(4),2018, 81–91. 98. -ELWAN ,M.W.M; EL-HAMAHMY. M.A.M .Improved productivity and quality associated with salicylic acid application in greenhouse pepper. Scientia Horticulturae 122(4),2009,521-526. 99. –ERDEM,T; ERDEM,Y; ORATA,H; OKURSOY,H.Water-yield RelationshipsOf Potato Under Different Irrigation Methods and Regimens. Sci. Agric. (Piracicaba, Braz.), v.63, n.3,2006, p.226-231. 100. -EYHERAGUIBEL, B; SILVESTRE ,J AND MORARD,P. Effects of humic substances derived from organic waste enhancement on the growth and mineral nutrition of maize. Bioresour. Technol.2008, 99:4206-4212. 101. -FAHRAJI ,S.S, KHERADMAND, M.A AND MAHDI ,M. Effect of salicylic acid on germination, leaf area, shoot and root growth in crop plants. Int Res J Appl Basic Sci 8,2014,1454–1458 . 102. -FAHRAMAND ,M; MORADI,H ; NOORI,M ; SOBHKHIZI,A ; ADIBIAN,M ; ABDOLLAHI,S AND RIGI,K. Influence of humic acid on increase yield of plants and soil properties. International Journal of Farming and Allied Sciences.2014, ISSN 2322-4134. 103. -FANDIKA, I.R; KEMP, P.D; MILINER, J.P; HORNE, D.; ROSKRUGE, N. Irrigationand nitrogen effects on tuber yield and water use efficiency of heritage and modern potato cultivars. Agric. Water Manag. 2016, 170, 148–157. 104. -FAO (2019) FAO statistical databases FAOSTAT. http://faostat3.fao.org. 105. -FARAZ, A., FAIZAN, M., SAMI, F., SIDDIQUI, H. AND HAYAT, S. Supplementation of salicylic acid and citric acid for alleviation of cadmium toxicity to Brassica juncea. Journal of Plant Growth Regulation, 39(2),2020, 641-655. 106. -FARHAD, M.S; BABAK,A.M;ZARDOSHTI MOHAMMAD REZA,M.Z; HASSAN,M.S.R AND TAVAKOLI AFSHIN,T.Response of proline, soluble sugars, photosynthetic pigments and antioxidant enzymes in potato(Solanum tuberosum L.) to different irrigation regimes in greenhouse condition. Austranil Journal of Crop Science 5(1):55-60 (2011) 107. -FARHANGI-ABRIZ, S., GHASSEMI-GOLEZANI, K. How can salicylic acid and jasmonic acid mitigate salt toxicity in soybean plants?. Ecotoxicol Environ Saf 2018 Jan;147:1010-1016. 108. -FARIDUDDIN, Q; HAYAT, S; AHMAD, A. Salicylic acid influences net photosynthetic rate, carboxylation efficiency, nitrate reductase activity, and seed yield in Brassica juncea. Photosynthetica 2003, 41, 281–284. 109. -FARIED,N.H., M.C. AYYUB., M. AMJAD.,R. AHMED.,M.F. WATTOO., M. BUTT,M.,M. BASHIR.,R.M. SHAHEEN ANDA.M. WAQASC.Salicylic acid confers salt tolerance in potato plants by improving water relations, gaseous exchange, antioxidant activities and osmoregulation. Journal of the Science of Food and Agriculture,2016, 110. -FAROOQ, M.;WAHID, A.; KOBAYASHI, N.; FUJITA, D.; BASRA, S.M.A. Plant drought stress: Effects, mechanisms and management. InSustainable Agriculture; Springer: Berlin, Germany, 2009; pp. 153–188. 111. -FAROOQ,U AND BANO, A. Effect of abscisic acid and chlorocholine chloride on nodulation and biochemical content of Vigna radiata L. under water stress. Pakistan Journal of Botany, 2006.38(5):1511-1518 112. -FARSHADFAR, E.; ELYASI, P. Screening quantitative indicators of drought tolerance in bread wheat (Triticum aestivum, L.) landraces. Eur. J. Experiment. Biol. 2012, 2, 577–584. 113. -FERNANDES, A.M; SORATTO, R.P SILVA, B.L. Extração e exportação de nutrientes em cultivares de batata: I - Macronutrientes. Revista Brasileira de Ciência do Solo, 2011,35:2039–2056. 114. -FLEISHER, D.H; TIMLIN,J.D AND REDDY,R.V. Interactive effects of CO2 and water stress on potato canopy growth and development. Agronomic Journal., 100,2008, 711-719. 115. -FOOD AND AGRICULTURE ORGANIZATION OF THE UNITED NATIONS. New Light on a HiddenFood Chem. 104,2009, 163-168. 116. -FOYER C. H., NOCTOR G. Ascorbate and glutathione: the heart of the redox hub. Plant Physiol. 155,2011, 2–18. 117. -FRIER, V. Some Factors that Influence Tuber growth in the Potato. Ph.D.thesis,University of London.1975. 118. -GAGO, J; DOUTHE ,C; FLOREZ-SARASAL,I; ESCALONA,M.J; GALMES,J; A.R. FERNIE,R.A; FLEXAS,J and MEDRANO,H. Opportunities for improving leafwater use efficiency under climate change conditions. Plant Sci.,2014, 226, 108-119. 119. -GARCÍA A,C; SANTOS ,L.A; IZQUIERDO, F.G; RUMJANEK ,V.M; CASTRO, R.N; DOS SANTOS, F.S; ET al.Potentialities of vermicompost humic acids to alleviate water stress in rice plants (Oryza sativa L.).J Geochem Explor. 2014;136:48–54. 120. - GATES P. Ecophysiologie du blé, de la plante à la culture, I.T.G.C. TEC, et Doc Lavoisier,1995, p: 417-429. 121. -GASTELO, M; KLEINWECHTER, U AND BONIERBALE, M. Global Potato Research for a Changing World. Working Paper. 2014. 122. -GATAOLINA, G, G AND ABDIKOF, M,C. Practical application of crops. Moskwo. Kolos,2005,304pp. 123. -GERM,M; KREFT,I; STIBILJ,V and URBANCE-BERICICI,O. Combinedeffects of selenium and drought on photosynthesis and mitochondrial respirationin potato. PlantPhysiol.Biochem. 2007, 45,162–167. 124. -GERVAIS T, CREELMAN A, LI X-Q, BIZIMUNGU B, DE KOEYER D AND DAHAL K . Potato Response to Drought Stress: Physiological and Growth Basis. Front. Plant Sci.2021, 12:698060. 125. GIKLOO, S.T.; ELHAMI, B. Physiological and morphological responses of two almond cultivars to drought stress and cycocel. International Research Journal of Applied and Basic Sciences, Tehran, v. 3, p. 1000–1004, 2012. 126. -GŁOSEK-SOBIERAJ, M.; CWALINA-AMBROZIAK, B.; WIERZBOWSKA, J.; WAŚKIEWICZ, A. The Influence of Biostimulants on the Content of P, K, Ca, Mg, and Na in the Skin and Flesh of Potato Tubers. Pol. J. Environ. Stud. 2019, 28, 1693–1700. 127. -GONZÁLWZ-VILLAGRA,J ;MARJORIE, M; REYES-DÍAZ ; TIGHE-NEIRA,R ;INOSTROZA-BLANCHETEAU,C ; ESCOBAR,L.A ;LEÓN A. BRAVO,A.L. Salicylic Acid Improves Antioxidant Defense System and Photosynthetic Performance in Aristotelia chilensis Plants Subjected to Moderate Drought Stress. Plants 2022, 11(5), 639. 128. -GRACA, J.P; RODRIGUES,A,F; FARIAS,B.R.J; OLIVEIRA,N.C.M; HOFFMANN-CAMPO,B.C AND ZINGARETTI.M.S. Physiological parameters in sugarcane cultivars submitted to water deficit. Braz. J. Plant. Physiol. 22,2010, 189-197. 129. -GREPPIN H; PENEL C AND GASPAR T . Molecular and Physiological Aspects of Plant Peroxidases. Geneve: University of Geneva.1986 130. -GUO, W.; CHEN, S.; HUSSAIN, N.; CONG, Y.; LIANG, Z.; CHEN, K. Magnesium stress signaling in plant: Just a beginning. Plant Signal. Behav. 2015, 10, e992287. 131. -HAGAR, H., UEDA,N AND SHAL,V.S. Role of reactive oxygen metabolites in DNA damage and cell death in chemical hypoxic injury LLC-PK1 cell. American Journal of Physiology, 271,1996, 209–215. 132. -HALFORD, N.G; CURTIS, T.Y; MUTTUCUMARU ,N; POSTLES, J & MOTTRAM, D.S .Sugars in crop plants. Annals of Applied Biology,2011, 158:1-25. 133. -HALL, H.K; MCWHA, J,A. Effects of Abscisic Acid on Growth of Wheat (Triticum aestivum L.) Annals of Botany ,Vol. 47, No. 4 (April 1981), pp. 427-433. 134. -HERMANS, C; CONN, S.J; CHEN, J; XIAO, Q; VERBRUGGEN, N. An update on magnesium homeostasis mechanisms in plants.Metallomics 2013, 5, 1170–1183. 135. -Halliwell ,B and Gutteridge, J.M. Free radicals in biology and medicine, third edition. Oxford: Oxford University Press.1998136. -HAMEDA, E.A; DEAN,E.S. A; EZZAT, S AND EL MORSY, A.H.A. Responses of productivity and quality of sweet potato to phosphorus fertilizer rates and application methods of the humic acid. International Research Journal of Agricultural Science and Soil Science (ISSN: 2251-0044) Vol. 1(9) pp. 383-393, November 2011. 137. -HANKS,B.J AND RASMUSSEN,V.P..Prediciting crop production as related to plant water strees.Science Direct,1982 ,Vol.35,PP193-215. 138. -HASAN, S.A; HAYAT, S; ALI, B. AND AHMAD, A. Homobrassinolide protects chickpea (Cicer arietinum) from cadmium toxicity by stimulating antioxidants. Environ. Poll.,2008, 151: 60-66. 139. -HASANUZZAMAN,M; NAHAR,K; BHUIYAN,F.T; ANEE,I.T INAFUKU,M; OKU,H AND FUJITA.,M Salicylic Acid: An All-Rounder in Regulating Abiotic Stress Responses in Plants Chapter 3 August 2017. 140. -HASHEMPOUR ,A; GHASEMNEZHAD, M; GHAZVINI R.F;SOHANI M.M. The physiological and biochemical responses to freezing stress of olive plants treated with salicylic acid. Russ. J. Plant Physl. 2014;61:443–450. 141. -HAVAERKORT, A.J; VAN DE WAART,M and BODLAENDER,A.K. The effect of early drought stress on numbers of tubers and stolons of potato in controlled and field conditions. Potato Research 33,1990, 89– 96. 142. -HAWORTH, M; KILLI, D; MATERASSI, A; RASCHI, A; CENTRITTO, M. Impaired stomatal control is associated with reduced photosynthetic physiology in crop species grown at elevated [CO2]. Front. Plant Sci. 7,2016, 1568. 143. -HAYAT, S, HASAN, S.A, FARIDUDDIN, Q and AHMAD A.Growth of tomato (Lycopersicon esculentum) in response to salicylic acid under water stress. J Plant Interact 3:297–304 (2008). 144. -HEJJEGAR , I; LAKSHMINARAYANA,D; SEENIVASAN,N AND NAIK,S.D. Studies on the influence of plant growth regulators and their time of application on growth and tuber yield of sweet potato (Ipomoea batatas L.) cv. Kiran under southern Telangana conditions. International Journal of Chemical Studies 2018; 6(3): 2254-2257 . 145. -HIJMANS,J.R AND SPOONER,M.D. Geographic Distribution Of Wild Potato Species1. American Journal of Botany 88(11),2001, 2101–2112. 147. -HONG-BO,S;WEI-YI,S;LI-YE,C. Advances of calcium signals involved in plant anti-drought . Comptes Rendus Biologies ,vol 331,issue 8,2008.pp587-596. 148. -HOPKINS, B., AND J. STARK. Humic acid effects on potato response to phosphorus. In: Robertson LD et al. (eds). Proceedings of Winter Commodity Schools 35: 87–92.2003. 149. -HOQUE, M.M.AND HAQUE, M.S. Effects of GA3 and its Mode of Application on Morphology and Yield Parameters of Mungbean Vigna radiata L. Pakistan J. Biol. Sci. 2002, 5, 281–283 150. -HORVÁTH,E; PÁL,M; SZALAI,G; PÁLDI ,E& JANDA,T. Exogenous 4-hydroxybenzoic acid and salicylic acid modulate the effect of short-term drought and freezing stress on wheat plants. Biologia Plantarum volume 51, pages480–487(2007). 151. -HSU, C.Y., P.Y. CHAO., S.P. HU AND C.M. YANG. The antioxidant and free radical scavenging activities of chlorophylls and pheophytins. Food Nutr Sci,2013, 4:1–8. 152. -HUSSAIN, H.A., MEN, S., HUSSAIN, S., CHEN, Y., ALI, S., ZHANG, S., ZHANG, K., LI, Y., XU, Q., LIAO, C. AND WANG, L. Interactive effects of drought and heat stresses on morpho-physiological attributes, yield, nutrient uptake, and oxidative status in maize hybrids. Scientific Reports, 9(1),2019, 3890. 153. -IBRAHIM, S.M.; ALI, M.A. Effect of potassium humate application on yield and nutrient uptake of maize grown in a calcareous soil. Alex. Sci. Exch. J. 2018, 39, 412–418. 154. -IERNA, A AND MAUROMICALE, G. How moderate water stress can affect water use efficiency indices in potato. Agronomy 10:1034.2020. 155. -IERNA, A AND MAUROMICALE, G. Tuber yield and irrigation water productivity in early potatoes as affected by irrigation regime. Agricultural Water Management2006 156. -IERNA,A ANDMAUROMICALE,G.Physiological and growth response to moderate water deficit of off-season potatoes in a Mediterranean environment. Agric.WaterManag.2012, 82,193–209. 157. -INNES,P;BLACKWELL,R.D AND QUARRIE,S.A . Some effects of genetic variation in drought-induced abscisic acid ac cu mu la tion on the yield and water use of spring wheat. J. Agr. Sci.1984, 102:341–351. 158. -INOMURA ,K; WILSON S ,T;DEUTSCH ,C .Mechanistic model for the coexistence of nitrogen fixation and photosynthesis in MarineTrichodesmium., Ecological and Evolutionary Science.4 (4) (2019), pp. e00210-e00219. 159. -JAARSMA, R; RSM,D; DE BOER, A.H . Effect of Salt Stress on Growth, Na+ Accumulation and Proline Metabolism in Potato (Solanum tuberosum) Cultivars. PLoS ONE,2013, 8(3): e60183. 160. -JACKSON, W.R. Organic Soil Conditioning, "Humic, Fulvic and Microbial Balance "isbn#0-9635741-0-8.1993. 161. -JAKOB, B AND HEBER ,U .Photoproduction and detoxification of hydroxyl radicals in chloroplasts and leaves in relation to photoinactivation of photosystems I and II. Plant and Cell Physiology1996 ,37: 629-635. 162. -JALEEL,C., GOPI,M.R.,GOMATH INAYA GAM,M. Effects of calcium Chlorid on metabolism of salt- stressed Dioscorea rotundata. Acta Biologica Cracoviensia Series Botanica,2008, 50(1):63-67. 163. -JIA,W AND ZHANG,J.Stomatal movements and long-distance signaling in plants. PlantSignal.Behav.2008, 3,772–777. 164. –JIANG, N;YU ,P. H; FU, W .M; LI, G. Y; FENG ,B .H; CHEN ,T .T; LI ,H. B; TAO L. X; FU, G. F. Acid invertase confers heat tolerance in rice plants by maintaining energy homoeostasis of spikelets.Plant Cell Environ, 2020 و 43(5): - 1273 1287 165. -JIAYING,A.M; TINGTING,C ; JIE,L; WEIMENG,F; BAOHUA,F; GUANGYAN,L ; HUBO1,L; JUNCAI1,L; ZHIHAI,W ; LONGXING1,T; GUANFU,F. Functions of Nitrogen, -Phosphorus and Potassium in Energy in Energy Status and TheirInfluences on Rice Growth and Development, Rice Science, 2022, 29(2): 166-178. 166. -JONES, H. G. Plants and Microclimate: A Quantitative Approach to Environmental Plant Physiology. Cambridge: Cambridge University Press.2014. 167. -JOVANOVIC, Z.; STIKIC, R.; VUCELIC-RADOVIC, B.; PAUKOVIC, M.; BROCIC, Z.; MATOVIC, G.; ROVCANIN, S.; MOJEVIC, M. Partial root-zone drying increases WUE, N and antioxidant content in field potatoes. Eur. J. Agron. 2010, 33, 124–131. 168. -KAHLON, M.S AND KHERA.L.K. Irrigation water productivity and potato (Solanum tuberosum L.) yield in different planting methods under mulch conditions. Journal of Agriculture and Ecology Research International 3(3),2015, 107–112. 169. KHAN, N; SYEED ,S; MASOOD, A; NAZAR, R AND IQBAL, N. Application of Salicylic Acid Increases Contents of Nutrients and Antioxidative Metabolism in Mungbean and Alleviates Adverse Effects of Salinity Stress. International Journal of Plant Biology1(1)2010 . 170. KHAN, M.I.R.; ASGHER, M.; KHAN, N.A. Alleviation of salt-induced photosynthesis and growth inhibition by salicylic acid involves glycinebetaine and ethylene in mungbean (Vigna radiata L.). Plant Physiol. Biochem. 2014, 80, 67–74. 171. KHAN, M.N., ZHANG, J., LUO, T., LIU, J., NI, F., RIZWAN, M., FAHAD, S. ; HU, L. Morpho-physiological and biochemical responses of tolerant and sensitive rapeseed cultivars to drought stress during early seedling growth stage. Acta Physiologiae Plantarum, 41(2),2019, 25. 172. KHAN A. L; WAQAS M; LEE I. J. Resilience of Penicillium resedanum LK6 and exogenous gibberellin in improving Capsicum annuum growth under abiotic stresses. J. Plant Res. 128,2015, 259–268. 173. -KHALILZADEH,R; SHARIFI ,S.R& JALILIAN,J. Antioxidant status and physiological responses of wheat (Triticum aestivum L.) to cycocel application and bio fertilizers under water limitation condition, Journal of Plant Interactions, 2016,11:1, 130-137. 174. -KALAJI ,H. M; OUKARROUM, A; ALEXANDROV, V; KOUZMANOVA ,M; BRESTIC, M; ZIVCAK ,M; SAMBORSKA, I. A; CETNER, M. D; ALLAKHVERDIEV ,S .I; GOLTSEV, V. Identification of nutrient deficiency in maize and tomato plants by in vivo chlorophyll a fluorescence measurements. Plant Physiol Biochem, 81,2014, 16-25. 175. -KEYVAN, M. H. AND M. IRANDOOST .Effect of different irrigation levels on the yield of potatoes in bardsir city. Acta Biologica Indica. 4(2),2015,149 - 157. 176. -KHALEGHI,E;ARZANI,K ;MOALLEMI,N;BARZEGAR,M. Evaluation of Chlorophyll Content and Chlorophyll Fluorescence Parameters and Relationships between Chlorophyll a, b and Chlorophyll Content Index under Water Stress in Olea europaea cv. Dezful. World Academy of Science, Engineering and Technology, 68 ,2012. 177. -KHALVANDI, M.; SIOSEMARDEH, A.; ROOHI, E.; KERAMATI, S. Salicylic acid alleviated the effect of drought stress on photosynthetic characteristics and leaf protein pattern in winter wheat. Heliyon 2021, 7, e05908. 180. -KHEIR, A.M.S.; ABOUELSOUD, H.M.; HAFEZ, E.M.; ALI, O.A.M. Integrated effect of nano-Zn, nano-Si, and drainage using crop straw–filled ditches on saline sodic soil properties and rice productivity. Arab. J. Geosci. 2019, 12, 1–8181. -KHAYATNEZHAD,M AND GHOLAMIN,R. The effect of drought stress on leaf chlorophyll content and stress resistance in maize cultivars (Zea mays). African Journal of Microbiology Research,2012, Vol. 6(12) pp. 2844-2848. 182. --KIANI S.P; MAURY ,P; SARRAFI ,A; GRIEU, P. QTL.Analysis of chlorophyll fluorescence parameters in sunflower (Helianthus annuus L.) under well-watered and water-stressed conditions. Plant Sci 175,2008, 565–573. 183. -KISHOR,K. P.B; HONG, Z; MIAO, C-H; HU, C.A AND VERMA, D.P.S .Overexpression of Δ1-pyrroline-5-carboxylate synthetase increases proline production and confers osmotolerance in transgenic plants. Plant Physiology ,1995,108: 1387-1394. 184. -KNUDSON, L. L; T.W. TIBBITTS AND G.E.EDWARDS. Measurement of Ozone injury by determination of leaf chlorophyll concentration plant Physiol. Justify, 60,1977,606-608. 185. -KOCH, M; NAUMANN, M; PAWELZIK, E; GRANSEE, A; THIEL, H. The importance of nutrient management for potato production Part I: Plant nutrition and yield. Potato Res. 2020, 63, 97–119. 186. -KOCSIS, L ; LIEBHARD, P ; PRAZNIK, W. Effect of seasonal changes on content and profile of soluble carbohydrates in tubers of different varieties of Jerusalem2007-2008. Journal of Agricultural and Food Chemistry 2007 55 (23), 9401-9408. 187. KORD, M AND HATHOUT ,T .Changes in some growth criteria, metabolic activities and endogenous hormones in tomato plants consequent to spraying with different concentrations of salicylaldehyde. Egypt J Physiol Sci.1992. 188. -KRUGER, N.J., AND VON SCHAEWEN, A. The oxidative pentose phosphate pathway: structure and organisation. Curr. Opin. Plant Biol. 6, 236–246. 189. -KU, S. B; EDWARDS, G. E; AND TANNER, C. B. Effects of light, carbon dioxide, and temperature on photosynthesis, oxygen inhibition of photosynthesis, and transpiration in Solanum tuberosum. Plant Physiol,1977, 59, 868–872. 190. -KUCHENBUCH, R; CLAASSEN, N; JUNGK, A. Potassium availability in relation to soil-moisture. 1. Effect of soil-moisture on potassium diffusion, root-growth and potassium uptake of onion plants. Plant Soil,1986, 95, 221–231. 191. -KUMAR,D;SINGH, P.A;RAHA,P; RAKSHIT,A; SINGH,M.C AND KISHOR,P. Potassium Humate: A Potential Soil Conditioner and Plant Growth Promoter. International Journal of Agriculture, Environment & Biotechnology: 6(3):441-446 September 2013. 192. -KUMAR,J, LAL1,M and PAL,K. Effect of cycocel on growth,yield and quality of tomato (Lycopersicon esculentum MILL.). HortFlora Research Spectrum, 1(2): 162-164 (2012) .ISSN : 2250-2823. 193. -KUMAR,N;PAL,M. and SRIVASTAVA,G.C.Proline metabolism in senescing rose petals(Rosahybrida L. ‘FirstRed’). J.Hortic.Sci.Biotech.2009, 84, 536–540. 194. -KUMAR,N;SRIVASTAVA,G.C;ANDDIXIT,K. Hormonal regulation of flower senescence in roses(Rosahybrida L.). Plant Growth Regul.2008, 55, 65–71. 195. -KUREPIN, L.V; IVANOV, A.G; ZAMAN, M. Stress related hormones andglycinebetaine interplay in protection of photosynthesis under abiotic stress conditions. Photosynth Res.2015,126, 221. 196. -KUSVURAN,S; KIRAN,S AND ELLIALTIOGLU,S.S. Antioxidant Enzyme Activities and Abiotic Stress Tolerance Relationship inVegetable Crops Submitted: March 23rd, 2016. 197. -LAHLOU,O; OUATTAR,S ; LEDENT,J.F .The effect of drought and cultivar on growth parameters, yield and yield components of potato. Agronomie, EDP Sciences, 2003, 23 (3), pp.257- 268. 198. LATIF,F;ULLAH,F;MEHMOOD,S;KATTAK,A;KHAN,U.A;KHAN,S.Effects of salicylic acid on growth and accumulation of phenolics in Zea mays L. under drought stress. Acta Agriculturae Scandinavica,Section B-Soil and Plant Science . 66,(4),2016, 325–332. 199. -LARQUE-SAAVEDRA A. Stomatal closure in response to acetal salicylic acid treatment. Z P flanzen physiol.1979, 93:371375. 200. LEGAY,S.,LEFEVRE,I.,LAMOUREUX,D.,BARREDA,C.,LUZ,R.T.,GUTIERREZ,R.,ETAL..Carbohydrate metabolism and cell protection mechanisms differentiate drought tolerance and sensitivity in advanced potato clones(Solanum tuberosum L.). Funct.Integr.Genomics,2011, 11,275–291. 201. -LEIGH, R.A; AHMAD,N ; JONES,W.G.R. Assessment of glicine betaine and proline compartmentation, by analysis of isolated beet vacuoles. Physiol. Plant.1981, 153:34–41. 202. -LEINONEN,I;GRANT,O.M;TAGLIAVIA,C.P.P;CHAVES,M.M;ANDJONES,H. G. Estimating stomatal conductance with thermal imagery. Plant Cell Environ.2006, 29,1508–1518. 203. LEVINE ,A; TENHAKEN ,R; DIXON, R AND LAMB ,C . H2O2 from the oxidative burstorchestrates the plant hypersensitive disease resistance response. 1994.Cell 79: 583-93. 204. -LIU ,Y.H; ZHANG ,X.H; LIU ,B.W; AO, B; LIU, Q; WEN, S.Y; XU ,Y.F . Hydrogen sulfide regulates photosynthesis of tall fescue under low-light stress. Photosynthetica,2019, 57:714–723. 205. -LIU, F.; SHAHNAZARI, A.; ANDERSEN, M.N.; JACOBSEN, S.E.; JENSEN, C.R. Physiological responses of potato (Solanum tuberosum L.) to partial root-zone drying: ABA signaling, leaf gas exchange, and water use efficiency. J. Exp. Bot. 2016, 57, 3727–3735. 206. -LOON,D.C. The effect of water stress on potato growth, development, and yield .American Potato Journal volume.1981, 58, pages51–69. 207. - LOPEZ,F.R; CASTILLO,S.F; PEREZ,E.J; LOZOYA-SALDANA,H .Paclobutrazol, uniconazole and cycocel in potato seed-tuber production in hydroponic culture. Revista Chapingo Serie Horticultura 17(2):173-182, 2011. 208. -LOPEZ-DELGADO, H. A., R. MARTÍNEZ-GUTIÉRREZ, M. E. MORA-HERRERA AND Y. TORRES-VALDÉS. Induction of freezing tolerance by the application of hydrogen peroxide and salicylic acid as tuber-dip or canopy spraying in Solanum tuberosum L. plants. Potato Res.,2018, 1-12.209. -LUITEL, B.P; KHATRI, B.B; CHOUDHARY, D; PAUDEL, B.P; JUNG-SOOK, S; HUR, O; BAEK, H.J;CHEOL, K.H; YUL, R.K. .Growth and yield characters of potato genotypes grown in drought and irrigated conditions of Nepal. Int. J. Appl. Sci. Biotechnol. 3 (3),2015, 513–519. 210. -LUORANEN ,J; RIKALA ,R ; APHALO, P.J. Effect of CCC and damonozide on growth of silver birch container seedlings during three years after spraying. New Forest 23,2002,71-80. 211. -MADY, M. A. Effect of foliar application with salicylic acid and vitamin e on growth and productivity of tomato (Lycopersicon esculentum, Mill.) plant .Journal of Plant Production. Article 17, Volume 34, Issue 6, June 2009, Page 6715-6726. 212. -MAHDI, A; BADAWY, S; LATEF, A.A; EL HOSARY, A; EL RAZEK, U.A and TAHA, R. Integrated Effects of Potassium Humate and Planting Density on Growth, Physiological Traits and Yield of Vicia faba L. Grown in Newly Reclaimed Soil. Agronomy 2021, 11, 461. 213. -MAHMOUD, A.R AND HAFEZ.M.M . Increasing productivity of potato plants (Solanum tubersoum L.) by using potassium fertilizer and humic acid application. International Journal of Academic Research,2010, 2: 83–88. 214. -MANIRANNAN, P; ABDUL JALEEL, C; SANKAR ,B; KISH OREKUMAR, A; SOMASUNDARAM, R; LAKSHMANAN ,G.M and PANNEERSELVAM, R . Growth, biochemical modifications and proline metabolism in Helianthus annuus L. as induced by drought stress. Colloids and Surf B: Biointerfaces ,2007,59: 141-149. 215. -MARIA,Z AND JUHASZ,B. Effects of drought stress on the metabolite contents and drought tolerance of transgenic potato lines. Theses of PhD dissertation SZENT ISTVÁN UNIVERSITY. Plant Sciences.2014. p1-3. 216. -MARTINEZ, C.A and U. MORENO. Expresiones i siologicas de resistencia a la sequia en dos variedades de papa sometidas aestres hidrico. Rev. Bras. Fisiol. Veget.1992, 4:33–38. 217. -MARSCHNER, H. Marschner’s Mineral Nutrition of Higher Plants, 3rd ed.; Academic Press: London, UK, 2012; pp. 178–189. 218. -MEENA, K.K; SORTY, A.M; BITLA, U.M; CHOUDHARY, K; GUPTA, P; PAREEK, A; SINGH, D.P; PRABHA, R; SAHU, P.K; GUPTA, V.K; SINGH, H.B; KRISHANANI, K.K. AND MINHAS, P.S. Abiotic stress responses and microbe-mediated mitigation in plants: the omics strategies. Frontiers in Plant Science,2017, 8: 172. 219. -MEHREGAN, B ; FARD, S.M; NEZHAD, A.R. Effect of foliar application of potassium silicate on some morphological, physiological and biochemical characteristics of Alternanthera repens L. under drought stress. J. Crops Improv. 2018, 20, 299–314.] 220. -MEMARI. H; TAFAZOLI ,E; HAGHIGHI ,A. Effect of drought stress and Metabolic Interface between Stress Perception and Physiological Responses', Plant methods of measurement. In: Sorghum in the Seventies. (Eds.): N.G.P. Rao and L.R.2011 221. -METWALY, E. E and R. S. EL-SHATOURY. Impact of Foliar Application with Salicylic Acid on Growth and Yield of Potato (Solanum tuberosum L.) under Different Irrigation Water Quantity. J. Plant Production, Mansoura Univ.2017, Vol. 8 (10): 969 - 977 . 222. -MIGUEL ,M; ALONSO ,M.J; SALAICES, M; ALEIXANDRE, A; LOPEZ, RAntihypertensive, ACE-inhibitory and vasodilator properties of an egg white hydrolysate: Effect of a simulated intestinal digestion. Food Chem,2007, 104: 163-168 223. -MILETIC, R.P.R, DODIG, D; MILUTINOVIC, S; MIHAJLOVIC, I; NIKODIJEVIC ,S.M . Strategies for solvingthe problem of drought in Eastern Serbia. 2010 .http://www.wgcrop.icidonline.org/40doc.pdf 224. -MIRANZADEH, H; EMAM, Y; SEYYED, H and ZARE, S. Productivity and Radiation Use Efficiency of Four Dryland Wheat CultivarUnder Different Levels of Nitrogen and Chlormequat Chloride. Journal of Agriculture Science and Technohlogy, 13,2011, 339-351. 225. -MOHAMED, G.F; AGAMY, R.A; RADY, M.M. Ameliorative molecular to tissue level. Ann Bot, 92,2011, 627-634. 226. -MONNEVEUX ,P ; BENLARIBI, M. Etude comparéé du comportement de deux variétés algériennes de blé dur (Triticum durum Desf) adaptées à la sécheresse. C.R. Acad. Agriculture. Fr., 1988,74, (5) ,73-83. 227. -MOTAGHI, S ; NEJAD ,S.T. The effect of different levels of humic acid and potassium fertilizer on physiological indices of growth. International Journal of Biosciences Vol. 5, No. 2, p. 99-105, 2014. 228. -MAMNABI,S ;NASROLLAHZADEH,S; GHASSEMI-GOLEZANI,K ; RAEI,Y. Improving yield-related physiological characteristics of spring rapeseed by integrated fertilizer management under water deficit conditions. Saudi Journal of Biological Sciences . Volume 27, Issue 3, March 2020, Pages 797-804. 229. –MACKINEY, G . Absorption of light by chlorophyll solution. Journal Biological Chemistry. 1941,140: 315-322. 230. -MAN-HONG,Y; LEI,Z;, SHENG-TAO, X;NEIL, B; MCLAUGHLIN and JING-HUI,L.Effect of water soluble humic acid applied to potato foliage on plant growth, photosynthesis characteristics and fresh tuber yield under different water deficits .Scientific Reports.2020, 10:7854. 231. -MANSUROGLU, S; KARAGUZEL,O; ORTACESME,V AND SAYAN,M. Effect of paclobutrazol on flowering, leaf and flower colour of Consolida orientalis. Pakistan Journal of Botany ,2009,41:2323-2332. 232. -MARX, A.T;ZININA,T.F AND GOLOBOF,V.N. Technical Control of Fruit Quality. B.O. Agropmomizdat , Mosco,1989, 421. (325- 357) (359-366). 233. -MEDAN, R. A. Effect of foliar application of Potassium and calcium on vegetative growth, yield and fruit quality of" ROYAL" apricot trees. Plant Cell Biotechnology and Molecular Biology,2020, 106-112. 234. -MIKKELSEN, R.L. Humic materials for agriculture. Better Crops,2005, 89: 6-10. 235. -MOHAMMED,H.M; HANAA A. ABD-ALRAHMAN, HANAN H. ABDEL-KADER and FATMA SAYED ABOUD. Effect of Potassium Humate and Levels of Potassium Fertilization on Growth, Yield and Nutritional Status of Tomato Plants . Journal of Horticultural Science & Ornamental Plants ,2021,13 (2): 124-133,ISSN 2079-2158. 236. -MOUSA, H.R;ABDEL-AZIZ ,S.M. Comparative response of drought tolerant and drought sensitive maize genotypes to water stress. Aust J Crop,2008, Sci 1: 31-36 237. -MUGO, N.J; KARANJA, N.N; GACHENE, C.K; DITTERT, K; GITARI, H.I, & SCHULTE-GELDERMANN, E. Response of potato crop to selected nutrients in Centraland Eastern highlands of Kenya. Cogent Food & Agriculture,2021, 7:1898762. 238. -MULLINS, E; MILBOURNE, D; PETTI, C; DOYLE-PRESTWICH, B. M ; MEADE, C. Potato in the age of biotechnology. Trends Plant Sci.,2006, 11, 254–260. 239. -MUNNS, R.; TESTER, M. Mechanisms of Salinity Tolerance. Annu. Rev. Plant Biol. 2008, 59, 651–681. 240. –MUTHONI, J; SHIMELIS, H and MELIS, R. Alleviating potato seed tuber shortage in developing countries: potential of true potato seeds. Aust J Crop Sci, 2013,7:1946–1954. 241. -NADLER,A.,and HEUER,B. Effect of saline irrigation and water deficit on tuber quality. PotatoRes.1995, 38,119–123. 242. -NARDI, S; PIZZEGHELLO, D; MUSCOLO,A AND VIANELLO,A. Physiological effects of humic substances onhigher plants. Soil Biol. Biochem. 34,2002,1527-1536. 243. -NAVALE,U.M ; AKLADE, S.A ; DESAI, J.R. ; NANNAVARE, P.V. Influence of Plant Growth Regulators on Growth, Flowering and Yield of Chrysanthemum (Dendrathema grandiflora Tzvelev) CV. ‘IIHR-6’1. International Journal of Pharma and Bio Sciences V1(2) . Navsari 396 -450,2010. 244. -NAYYAR , H; SATWINDER ,R.U.A.K; KUMAR,S; SINGH,J.K, and DHIR ,K.K. Involvement of polyamines in the contrasting sensitivity of chickpea (Cicer arietinum L.) and soybean (Glycine max (L.) Merrill.) to water deficit stress, Botanical Bulletin of Academia Sinica, Vol. 46, 2005. 245. -NEJADSAHEBI,M; MOALLEMI ,NAND LANDI ,A. Effects of Cycocel and Irrigation Regimes on Some Physiological Parameters of Three Olive Cultivars. American Journal of Applied Sciences 7 (4): 459-465, 2010 ISSN 1546-9239. 246. Neves-Piestun ,B.G and Bernstein, N. Salinity-induced inhibition of leaf elongation in maize is not mediated by changes in cell wall acidification capacity.PlantPhysiology,2001, 125: 1419–1428. 247. -NIKBAKHT,A; KAFI,M; BABALAR,M XIA,P; LUO,A AND ETEMADI,N. Effect of Humic Acid on Plant Growth, Nutrient Uptake, and Postharvest Life of Gerbera. Journal of Plant Nutrition, 31: 2155–2167, 2008. 248. NIKIFOROVA,M.A. AND SEMIKIN,E.V.The Short method for calculating the economic out put.1983,21. 249. -NJOGU, M. K., G. K. GATHUNGU and P. M. DANIE. Comparative effects of foliar application of gibberellic acid and benzylaminopurine on seed potato tuber sprouting and yield of resultant plants. Am. J. Agric. and Forest., 3 (5),2015, 192-201. 250. -OBIDIEGWU,E.J; BRYAN,J.G; JONES,G.H and PRASHAR,A. Coping With Drought: Stress And Adaptive Responses In Potato And Perspectives For Improvement . Front Plant Sci.22July 2015. 251. -OLAETXEA, M.; MORA, V.; BACAICOA, E.; GARNICA, M.; FUENTES, M.; CASANOVA, E.; ZAMARREÑO, A.M.; IRIARTE, J.C.; ETAYO, D.; EDERRA, I. Abscisic acid regulation of root hydraulic conductivity and aquaporin gene expression is crucial to the plant shoot growth enhancement caused by rhizosphere humic acids. Plant Physiol. 2015, 169, 2587–2596. 252. -OMIDI ,H ; SORUSHZADEH, A; SALEHI, A; DINGHIZLI, F. Evaluation of priming effects on germination of rapeseed (In Persian). Agricultural sciences and industrials. 19,2005, 125-135.253. -OPENA, G.B., PORTER, G.A. Soil Management and Supplemental Irrigation Effects on Potato: II. Root GrowthGeraldine ,Biology-Agronomy Journal ,1999, 25: 46-52. 254. –ORSÁK,1.M; ZORA KOTÍKOVÁ1,Z; HNILIČKA,F; LACHMAN,J. Effect of drought and waterlogging on saccharides and amino acids content in potato tubers. Plant, Soil and Environment, 67, 2021 (7): 408–416 255. -OSAKABE,Y; OSAKABE,K ; SHINOZAKI,K and TRAN,P.L.Response of plants to water stress. Plant Science,2014,5:86. 256. -OSMAN, A.R. Improving some quantitative and qualitative characteristics of Solidago canadensis "Tara"using cycocel and planting density under drip irrigation and lighting systems. Life Science Journal, 2014,11(6): 110-118. 257. -OZFIDAN-KONAKCI, C.; YILDIZTUGAY, E.; KUCUKODUK, M. Upregulation of antioxidant enzymes by exogenous gallic acid contributes to the amelioration in Oryza sativa roots exposed to salt and osmotic stress. Environ. Sci. Pollut. Res. 2015, 22, 1487–1498. 258. -PAPADAKIS, J. Fundamentals of Agronomy (Compendium of crop ecology) Buenos Aires,1970, pp. 73. 259. -PASCUAL, J.A., GARCIA,C and HERNANDEZ.,T. Comparison of fresh and composted organic waste in their efficacy for improvement of arid soil quality. Bioresources Technol.,1999, 68: 255-264. 260. –PASTORI, G.M AND TRIPPI ,V.S. Oxidative stress induces high rate of glutathione reductase synthesis in a drought-resistant maize strain. Plant Cell Physiol., 33:1992, 957–961. 261. -PATHIRANA, I; THAVARAJAH, P; SIVA ,N; WICKRAMASINGHE, A.N.K; SMITH ,P;THAVARAJAH ,D. Moisture deficit effects on kale (Brassica oleracea L. var. acephala) biomass, mineral, and low molecular weight carbohydrate concentrations. Scientia Horticulturae, 2017,226: 216–222. 262. -PETTER J.D., (2005). Plants hormones-biosynthesis signal transduction 263. -PLICH, J., BOGUSZEWSKA-MA´NKOWSKA, D and MARCZEWSKI, W. Relations between photosynthetic parameters and drought-induced tuber yield decrease in Katahdin-derived potato cultivars. Pot. Res.2020, 63, 463–477. 264. -POIRIER,Y AND BUCHER, M. Phosphate transport and homeostasis in Arabidopsis. Arabidopsis Book. 2002;1:e0024. 265. -POURGHAYOUMI, M; BAKHSHI, D; RAHEMI, M; KAMGAR-HAGHIGHI, A.A. and AALAMI, A. The physiological responses of various pomegranate cultivars to drought stress and recovery in order to screen for drought tolerance. Scientia Horticulturae,2017, 217: 164-172. 266. -PRASHAR,A and JONES,H.G. Infra-Red Thermography as a High-Throughput Tool for Field Phenotyping, Agronomy 2014, 4(3), 397-417. 267. -PRASHAR,A;YILDIZ,J; MCNICOL,J.W;BRYAN,G.J and JONES,H.G. Infra-red thermography for high through put field phenotyping in Solanum tuberosum. PLoSONE 8:e65816.2013. 268. -PFISTER,B AND •ZEEMAN,C.S. Formation of starch in plant cells. Cellular and Molecular Life Sciences, 2016, 73:2781–2807. 269. -QI ET AL; QI, R; GU ,W; ZHANG, J; HAO, L; ZHANG, M; DUAN, L; LI, Z. Exogenous diethyl aminoethyl hexanoate enhanced growth of corn and soybeanseedlings through altered photosynthesis and phytohormone. Australian Journal of Crop Science, 2013;7:2021–2028. 270. -QIANG,L; JIANHUA,C; LONGJIANG,Y; MAOTENG,L; JINJING,L. plant omics journal , Southwest University China.Effects on physiological characteristics of Honeysuckle (Lonicera japonica Thunb) and the role of exogenous calcium under drought stress, 5(1).2012,1-5. 271. -QU, X; WANG, H; CHEN, M; LIAO, J; YUAN, J. and NIU, G. Drought stress–induced physiological and metabolic changes in leaves of two oil tea cultivars. Journal of the American Society for Horticultural Science,2019, 144(6): 439-447. 272. –QUESADA, V; PONCE, M.R AND MICOL, J.L .Genetic analysis of salt-tolerant mutants inArabidopsis thaliana. Genetics,2000, 154: 421–436. 273. -RASKIN, I. Role of salicylic acid in plants. Ann. Rev. Pl. Physiol. Pl. Mol. Biol., 1992,2: 439-463. 274. –REDDY, V.S AND REDDY A.S.N. Proteomics of calcium-signaling components in plants. Phytochemistry ,2002,65: 1745–1776. 275. -ROBINSON J. M AND BUNCE J. A. Influence of drought-induced water stress on soybean and spinach leaf ascorbate-dehydroascorbate level and redox status. Int. J. Plant Sci.2000, 161 271–279. 276. -RODRIGUEZ ,P; TORRECILLAS, A; MORALES, M.A; ORTUNO, M.F; SÁNCHEZ-BLANCO. Effects of NaCl salinity and water stress on growth and leaf water relations of Asteriscus maritimus plants. Environmental and Experimental Botany,Volume 53, Issue 2, April 2005, Pages 113-123. 277. -RODRÍGUEZ-PÉREZ,L ;ÑÚSTEZ L, PATRICIA,L.C.E; MORENO ,F.Drought stress affects physiological parameters but not tuber yield in three Andean potato (Solanum tuberosum L.) cultivars.. Agronomía Colombiana 35(2), 158-170, ISSN 0120-996. 2017. 278. -ROMERO, A.P; ALARCÓN,A ; VALBUENA,I.R and GALEANO,H.C. Physiological Assessment of Water Stress in Potato Using Spectral Information. Front. Plant Sci.2017, 8:1608. 279. -RUSSO, R.O and BERLYN, G.P. The Use of Organic Biostimulants to Help Low Input Sustainable Agriculture. Journal of Sustainable Agriculture, Vol. l(2) 1990. 280. -RYKACZEWSKA, K. Morphology and Anatomy of the Root System of New Potato Cultivars Part I. Morphlogy of the Root System.Biul. Inst. Hod. I Aklim. Ro´slin 2015, 279, 31–43. 281. -SABAGH AE, MBARKI S, HOSSAIN A, IQBAL MA, ISLAM MS, RAZA A, LLANES A, REGINATO M, RAHMAN MA,MAHBOOB W, SINGHAL RK, KUMARI A,RAJENDRAN K, WASAYA A, JAVED T,SHABBIR R, RAHIM J, BARUTÇULAR C,HABIB UR RAHMAN M, RAZA MA,RATNASEKERA D, KONUSKAN Ö L,HOSSAIN MA, MEENA VS, AHMED S,AHMAD Z, MUBEEN M, SINGH K,SKALICKY M, BRESTIC M, SYTAR O,KARADEMIR E, KARADEMIR C, ERMAN AND FAROOQ M Potential Role of Plant Growth Regulators in Administering Crucial Processes Against Abiotic Stresses.Front. Agron.2021, 3:648694. 282. -SAIRAM, R.K; RAO, K.V; SRIVASTAVA, G. Differential response of wheat genotypes to long term salinity stress in relation to oxidative stress, antioxidantactivity and osmolyte concentration. Plant Sci. 2002, 163, 1037–1046. 283. -SAMI, F; YUSUF, M; FAIZAN ,M; FARAZ, A;HAYAT, S. Role of sugars under abiotic stress. Plant Physiology and Biochemistry,2016, 109: 54–61. 284. -SANDERS,D; PELLOUX,J; BROWNLEE,C;ANDHARPER,J.F. Calciumatthe cross roads of signaling. Plant Cell,2002, 14,S401–S417. 285. -SANTOS, E.F; MATEUS, N.S; ROSARIO, M.O; GARCEZ, T.B; MAZZAFERA, P.; LAVRES, J. Enhancing potassium content in leaves and stems improves drought tolerance of eucalyptus clones, Special Issue: Drought Tolerance,June 2021 ,. Volume172, Issue2, Pages 552-563. 286. -SARAN, V. P and CHHABRA, P. Studies on the parameters of potato processing. – Int. Interdisciplinary Research Journal 4,2014, 320-33. 287. -SARHAN ,Z.T. Effect of humic acid and seaweed extracts on growth and yield of potato plant (Solanum tubersum L) desiree CV. Hort. Dept., College of Agric., Duhok Univ., Iraq Mesopotamia j of Agriculture 2011, Vol. (39) No (2) (ISSN 1815-316X). 288. -SARIR, M.S; SHARIF, M; AHMED, Z; AKHLAQ, M. Influence of different levels of humic acid application by various methods on the yield and yield components of maize Sarhad . Journal of Agricultural Science,2005, 21(1): 75-81. 289. -SARKER, K.K.; HOSSAIN, A.; TIMSINA, J.; BISWAS, S.K.; KUNDU, B.C.; BARMAN, A.; MURAD, K.F.I.; AKTER, F. Yield and quality of potato tuber and its water productivity are influenced by alternate furrow irrigation in a raised bed system. Agric. Water Manag. 2019, 224, 105750. 290. -SAVOURE, A., HUA, X.J., BERTAUCHE, N., VANMONTAGU, M., AND VERBRUGGEN, SAVOURÉ,A; HUA,J.X; VAN MONTAGU ,M& VERBRUGGEN,N. Abscisic acid-independent and abscisic acid-dependent regulation of proline biosynthesis following cold and osmotic stresses in Arabidopsis thaliana. Molecular and General Genetics,1997, 254, 104-109. 291. -SAWAZAKI, H.E AND TEIXEIRA.F.P.J. Variaçوo do teor de proline em folhas de feijao em funçao da disponibilidade de لguano solo. Bragantia,1981, 40:47–56. 292. -SCHMIERER, M;KNOPF, O; ASCH, F. Growth and photosynthesis responses of a super dwarf rice genotype to shade and nitrogen supply. Rice Sci, 28(2),2021, 178-190 293. -SCOTT, G. J; ROSEGRANT, M. W; RINGLER, C. Roots and Tubers for the 21st CenturyTrends, Projections, and Policy Options. International Food Policy Research Institute 2033 K Street, N.W., Washington, D.C. 20006-1002 U.S.A. May 2000. 294. -SELEM, E; HASSAN, A.A.S.A; AWAD, M.F; MANSOUR, E.; DESOKY, E. S.M. Impact of Exogenously Sprayed Antioxidants on Physio-Biochemical, Agronomic, and Quality Parameters of Potato in Salt-Affected Soil. Plants 2022, 11, 210. 295. -SELIM, E.M; MOSA, A.A; EL-GHAMRY, A.M.Evaluation of humic substances fertigation through surface and subsurface drip irrigation systems on potato grown under Egyptian sandy soil con-ditions. Agric Water Manag,2009, 96:1218–1222 296. -SELIM, E.M; SHEDEED,I.S.H; ASAAD,F.F ; EL-NEKLAWY,A.S. Interactive Effects of Humic Acid And Water Stress on Chlorophyll and Mineral Nutrient Contents of Potato Plants. Journal of Applied Sciences Research, 8(1): 531-537, 2012 ISSN 1819-544.297. -SHABBIR, R.N.; WARAICH, E.; ALI, H.; NAWAZ, F.; ASHRAF, M.; AHMAD, R.; AWAN, M.; AHMAD, S.; IRFAN, M.; HUSSAIN, S. Supplemental exogenous NPK application alters biochemical processes to improve yield and drought tolerance in wheat (Triticum aestivum L.). Environ. Sci. Pollut. Res. 2016, 23, 2651–2662. 298. -SHAHWAN,E.D.M. Inducing systemic resistance against some tomato virus diseases.PH.D.THESIS,PLANT PATHOLOGY DEPARTMENT,Faculty of Agriculture Moshtohor,BenhaUniversity,Egypt.2010.225pp. 299. -SHAKIROVA, F. Role of hormonal system in the manifestation of growth promoting and antistress action of salicylic acid, in Salicylic Acid.: A Plant Hormone, ed. by S. Hayat and Ahmad A. Springer, pp. 69-89 ,2007. 300. -SHAO ,A; SUN, Z. C; FAN, S. G; XU ,X; WANG, W; AMOMBO, E; YIN, Y. L; LI ,X N; WANG, G. Y; WANG, H. L; FU, J. M. Moderately low nitrogen application mitigate the negative effects of salt stress on annual ryegrass seedlings. PeerJ,2020, 8: e10427. 301. -SHAO, R.X.; XIN, L.F.; GUO, J.M.; ZHENG, H.F.; MAO, J.; HAN, X.P.; JIA, L.; JIA, S.J.; DU, C.G.; SONG, R.; ET AL. Salicylic acid-induced photosynthetic adaptability of Zea mays L. to polyethylene glycol-simulated water deficit is associated with nitric oxide signaling. Photosynthetica, 2018, 56, 1370–137. 302. -SHARAFZADEH,S; DEIMEHR,M ; JAHROM,E.A. Effect of Irrigation Regimes on Growth and Yield of Two Potato Cultivars ,January 2011,Advances in Environmental Biology. 303. -SHARMA, A.,B. SHAHZAD .,V. KUMAR.,S.K. KOHLI.,G.P.S.SIDHU .,A.S. BALI., N.HANDA., D.KAPOOR, .,R. BHARDWAJ .,B. ZHENG. Phytohormones regulate accumulation of osmolytes under abiotic stress. Biomolecules, 2019.9, 285. 304. -SHARMA, A; SINGH SIDHU,P.G;FABRIZIO ARANITI ,F; ADITI SHREEYA BALI ,S.A; SHAHZAD ,B; TRIPATHI ,K.D; BRESTIC ,M; SKALICKY ,M; AND LANDI ,M. The Role of Salicylic Acid in Plants Exposed to Heavy Metals. Molecules 2020, 25, 540. 305. -SHARMA, N; KAUR, N.; GUPTA, A. K. Effects of Gibberellic Acid and Chlorocholine Chloride on Tuberization and Growth of Potato (Solanum tuberosum L). Journal Sci. Food Agric. 78:1998, 466-470. 306. -SHEKOOFA,A AND EMAM,E. Effects of Nitrogen Fertilization and Plant Growth Regulators (PGRs) on Yield of Wheat (Triticum aestivum L.) cv. Shiraz. Journal of Agricultural Science and Technology 10(2). 307. -SHEVYAKOVA, N.I. Metabolism and the physiological role of proline in plants under conditions of water and salt stress. Sov. Plant Physiol.1984. 30:597–608. 308. -SHIRI-E-JANAGARD,M.,TOBEH,A.,ABBASI,A.,JAMAATI-E-SOMARIN, S.,HASSANZADEH, M.,ANDZABIHI-E-MAHMOODABAD,R. Effects of water stress on water demand,growth and tuber grade of potato(Solanumtuberosum L.)crop. Res. J.Environ.Sci.,2009, 3,476–485.doi:10.3923/rjes.2009.476.485. 309. -SIDDIQUE, M.R.B; HAMID,A; ISLAM.S.M .Drought stress effects on water relations of wheat. Bot. Bull. Acad. Sin.2000, 41, 35-39. 310. -SIGNORELLI,S.,COITINO,E.L.,BORSANI,O.,and MONZA,J. Molecular mechanisms for the reaction between OH radicals and proline:in sights on the role as reactive oxygen species scavenger in plant stress. J.Phys.Chem.B,2014, 118, 37–347. 311. -SIMAEI, M; KHAVARI-NEJAD,A.R and BERNARD,F .Exogenous application ofsalicylic acid and nitric oxide on the ionic contents and enzymatic activities in NaCl-stressed soybean plants. American Journal of Plant Sciences, 2012,3: 1495-1503. 312. -ŠIMKO, I. Effect of paclobutrazol on in vitro formation of potato microtubers and their sprouting after storage. Biologia Plantarum,1994, 36:15-20. 313. -SINGH ,A;KUMAR,A;YADAV,S. Reactive oxygen species-mediated signaling during abiotic stress . Plant Gen, Science Direct. Volume 18, June 2019, 100173. 314. -SISKA, N; SULIANSYAH, I; DAN ZEN, Y.M. Pengaruh Konsentrasi dan Waktu Pemberian Cycocel terhadap Pertumbuhan dan Hasil Tanaman Umbi Mini Kentang (Solanum Tuberosum L.). Jerami,2010, 3 (2): 95-106. 315. -SMIRNOFF, N . Ascorbate biosynthesis and function in photoprotection. Philos Trans R Soc Lond B Biol Sci ,2000,355:1455–1464. 316. SPARK, K. M., J. D. WELLS, AND B. B. JOHNSON. . Characteristics of the sorption of humic acid by soil minerals. Soil Research ,1997,35 (1):103–12. doi: 10.1071/S96009. 317. -SPRENGEL, K. Die Bodenkunde oder die Lehre vom Boden. Mûller, Leipzig 1839. 318. -SRIVASTAV, M; KISHOR, A; DAHUJA, A; SHARMA, R.R. Effect of paclobutrazol and salinity on leakage, proline content and activities of antioxidant enzyme in mango (Mangifera indica L.). Sci. Hortic.2010,125, 785–788. 319. -STARK, J.C; LOVE, S.L; KING, B.A; MARSHALL, J.M; BOHL, W.H. ; SALAIZ, T. Potato cultivar response to seasonal drought patterns. Am. J. Potato Res. 2013,90: 207–216. 320. -STEDUTO ,P; ALBRIZIO, R; GIORIO, P .Gas exchange response and stomatal and non-stomatal limitations to carbon assimilation of sunflower under salinity. Env Exp Bot.2000, 44:243-255. 321. -STEVENSON, F. J. Organic phosphorus and sulfur compounds in Humic Chemistry : Genesis, composition, reactions. John Wiley & Sons, New York,1982,120-145. 322. -SULLIVAN, C.Y. Mechanism of heat and drought resistance in grain sorghum and methods of measurement. In: Sorghum in the Seventies. (Eds.): N.G.P. Rao and L.R. House. Oxford and IBH Publishing Co., New Delhi.1972. 323. –SWIATEK, A; LENJOU, M; BOCKSTAELE ,D.V; INZE, D AND ONCKELEN, H.V. Differential effect of jasmonic acid and abscisic acid on cell cycle progression in tobacco BY-2 cells.Plant Physiology 128: 201–211.2002. 324. -SZABADOS,L and SAVOURÉ,A. Proline:a multi functional amino acid. Trends PlantSci.2010, 15,89–97.doi:10.1016/j.tplants.2009.11.009. 325. TAKAHASHI, F., KUROMORI, T., SATO, H., SHINOZAKI, K. (2018). Regulatory Gene Networks in Drought Stress Responses and Resistance in Plants. Adv. Exp. Med. Biol.2018, 1081, 189–214. 326. TAKAHASHI, F., HANADA, K., KONDO, T., AND SHINOZAKI, K. Hormone-like peptides and small coding genes in plant stress signaling and development . Curr. Opin. Plant Biol.2019, 51, 88–95. 327. -TEIXEIRA,J; PEREIRA,S. High salinity and drought act on an organ-dependent manner on potato glutamine synthetase expression and accumulation, May 2007Environmental and Experimental Botany, 2007,60(1):121-126. 328. -TRUEBA, S; PAN, R; SCOFFONI, C; JOHN, G.P; DAVIS, S.D. and SACK, LThresholds for leaf damage due to dehydration: declines of hydraulic function, stomatal conductance and cellular integrity precede those for photochemistry. New Phytologist, 223(1),2019,134-149. 329. -TSEGAW, T AND HAMMES,P .Growth responses of potato (Solanum tuberosum) grown in a hot tropical lowland to applied paclobutrazol: 2. Tuber attributes. New Zealand Journal of Crop and Horticultural Science ,2005,33:43-51. 330. --URREHMAN, H.; ALHARBY, H.F.; ALZAHRANI, Y.; RADY, M.M. Magnesium and organic biostimulant integrative application induces physiological and biochemical changes in sunflower plants and its harvested progeny on sandy soil. Plant Physiol. Biochem. 2018, 126, 97–105. 331. -VANKOVÁ, R; DOBRÁ, J; and ŠTORCHOVÁ, H. Recovery from drought stress in tobacco: an active process associated with the reversal of senescence some plant parts and the sacrifice of others. Plant Signal.Behav.2012. 7,19–21. 332. -VERSLUES P.E AND SHARMA,S. Proline Metabolism and Its Implications for Plant-Environment Interaction. The Arabidopsis Book © 2010 American Society First published on November 3, 2010. 10.1199/tab.0140. 333. -WAKCHAURE, G.; MINHAS, P.; KUMAR, S.; KHAPTE, P.; MEENA, K.; RANE, J.; PATHAK, H. Quantification of water stress impacts on canopy traits, yield, quality and water productivity of onion (Allium cepa L.) cultivars in a shallow basaltic soil of water scarce zone. Agric. Water Manag. 2021, 249, 106824. 334. -WALWORTH, J AND CARLING,D. Tuber initiation and development in irrigated and non-irrigated potatoes. Am. J. Potato Res.2002, 79, 387–395.- 335. –Wang, H; Qi, Q; Schorr, P; Cutler, A.J; Crosby, W.L and Fowke, L.C. ICK1, acyclin-dependent protein kinase inhibitor from Arabidopsis thaliana interacts with bothCdc2a and CycD3, and its expression is induced by abscisic acid. Plant Journal 15: 501–510.1998. 336. -WANG ,H.Q ; XIAO, L.T. Effects of chlorocholine chloride on phytohormones and photosynthetic characteristics in potato (Solanum tuberosum L.) J Plant Growth Regul. 2008;28(1):21–27. 337. -WANG ,S; ZHU, Y; JIANG, H & CAO, W. Positional differences in nitrogen and sugar concentrations of upper leaves relate to plant N status in rice under different N rates. Field Crops Research, 2006,96:224-234. 338. -WANG ,Y; WU, W .H. Genetic approaches for improvement of the crop potassium acquisition and utilization efficiency. Current Opinion in Plant Biology,Volume 25, June 2015, Pages 46-52. 339. -WANG, H. X; LU, Y; XU ,J .L; LIU, X. J; SHENG L. X. Effects of additives on nitrogen transformation and greenhouse gases emission of co-composting for deer manure and corn straw.Environ Sci Pollut Res Int, 28,2021,13000-13020. 340. -WANG, H.; XIAO,L; TONG,J;LIU.F. Foliar application of chlorocholine chloride improves leaf mineral nutrition, antioxidant enzyme activity, and tuber yield of potato (Solanum tuberosum L.). Scientia Horticulturae,2010, 125: 521-523. 341. -WHITE, P. J; BRADSHAW, J. E; DALE, M. F. B; RAMSAY, G; HAMMOND, J. P; AND BROADLEY, M. R. Relationships between yield and mineral concentrations in potato tubers. HortScience ,2009,44, 6–11. 342. -WIJAYA,H; SLAMETO; HARIYONO,K. Effect of Cycocel Concentration on Result ofMini Potato Tubers (Solanum tuberosum L.) in Hydroponic Substrate. International journal of science, engineering, and information technology Volume 02, Number 01, December 2017. 343. -WIJESINHA-BETTONI, R AND MOUILLÉ, B. The contribution of potatoes to global food security, nutrition and healthy diets. American Journal of Potato Research,2019, 96 (2), 139-149. 344. -XU H.X; WENG, X.Y; YAN, Y. Effect of phosphorus deficiency on the photosynthetic characteristics of rice plants– Russ. J. Plant Physl,2007, 54: 741-748. 345. -Xu, Q; Xu, X; Zhao, Y; Jiao, K; Herbert, S.J; Hao, L. Salicylic acid, hydrogen peroxide and calcium-induced saline tolerance associated with endogenous hydrogen peroxide homeostasis in naked oat seedlings. Plant Growth Regul. 2008, 54, 249–259. 346. -XU,Z.,ZHOU,G.,ANDSHIMIZU,H.Plant responses to drought and rewatering. PlantSignal.Behav.,2010, 5,649–654. 347. -YANG,J.Z; ZHANG, J; WANG, Z; ZHU,Q AND LIAL,L. 'Water Stress- Induced Senescence.2001. 348. -YAZDANPANAH, S; BAGHIZADEH, A AND ABBASI, F. The interaction between drought stress and salicylic acid and ascorbic acid on some biochemical characteristics of Satureja hortensis. Afric. J. Agric. Res.2011, 6(4): 798-807. 349. -YOUSEFVAND,P; SOHRABI,Y; HEIDARI,G WERIA WEISANY,2 AND ANDREA MASTINU,A; GENOVESE,S. Salicylic Acid Stimulates Defense Systems in Allium hirtifolium Grown under Water Deficit Stress. Molecules. 2022 May; 27(10): 3083. 350. -ZAKI, N.M; HASSANEIN, M.S.; AHMED, A.G; EL-HOUSINI, E.A; TAWFIK, M.M. Foliar application of potassium to mitigate the adverse impact of salinity on some sugar beet varieties. 2: Effect on yield and quality. Middle East J. Agric. Res. 2014, 3, 448–460. 351. -ZEIER, J. Metabolic regulation of systemic acquired resistance. Curr. Opin. Plant Biol. 2021, 62, 102050 352. -ZHANG J. Y; CRUZ D. E; CARVALHO, M. H; TORRES-JEREZ I; KANG Y;ALLEN S. N; ET AL. Global reprogramming of transcription and metabolism in Medicago truncatula during progressive drought and after rewatering. PlaCell Environ. ,2014,37 2553–2576. 367- ZHANG, L; WANG, Z; XIA, Y; KAI, G; CHEN, W;TANG, K. Metabolic engineering of plant L–ascorbic acid biosynthesis: recent trends and applications. Crit Rev Biotechnol ,2007,27:173–182.
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