References
1- A.O.A.C., (1970). Offical Methods of Analysis 11th ed. Washington, D.C. Association of Offical Analytical Chemists. P. 101.
2- Abbas, G H.; Farooq, K.; Hafiz, I.A.; Hussain, A. N.A.; Abbasi, N.A. and Shabbir, GH. (2011). Assessment of processing and nutritional quality of potato genotypes. Pak. J. Agri. Sci., Vol. 48(3), 169-175.
3- Abbasi, FF., Baloch MA., Aia-ulhassan W.K.H., Shah AN, Rajpar I. (2010). Growth and yield of okra under foliar application of some new multinutrient fertilizer products. Pak J Agric Agric Eng Vet Sci 26:11–18
4- Abdelrazzag, A. (2002). Effect of chicken manure. sheep manure and inorganic fertilizer on yield and nutrients uptake by onion. Pakistan journal of Biological Sciences, 5 (3): 266 – 268
5- Adams, J. B. (2004). Raw materials quality and the texture of processed vegetables. Texture in Food, 342–363
6- Afzel, M. and Adams W.A. (1992). Heterogeneity of soil mineral nitrogen in pasture grazed by cattle. Soil Science Soceity American Journal, (56): 1160-1166.
7- Aiken, G. R.; D. M. Mckinght and R. L. Wershawl.1985. [Humic Substances in Soil, Sediment and Eater] Wiley Inter-science, New York. C. F. 8- Akila, N. and Jeyadoss, X. (2010). The potential of seaweed liquid fertilizer on the growth and antioxidant enhancement of Helianthus annuus L. Orient J Chem 26:1353–1360 9- AL-Abtan. H. and Saad A. M. AL-Mohammedi. S. (2016). Response of Growth and yield of two potato cultivars (Solanum tuberosum L.) for soaking with Gibberellic, and Plant and seaweed extracts, and humic fertilization for autumn Season. Diyala Journal of Agricultural Sciences. ISSN: 20739524. Volume: 8 Issue: 2 Pages: 242-254.
10- Al-Farhan, H. N. (1990). The effects of plant growth substances on the yield of potatoes. PhD Thesis, University of Wales, Bangor, U. K.11- Allen, E.J. (1978). Plant density – in The Potato Crop. The Scientific Basis For Improvement (edited by P.M. Harris), Chapman & Hall, London.
12- Alves RC, Merces P.F.F, Souza I.R.A., Alves C.M.A, Silva A.P.S.A, Lima V.L.M, Correia M.T.S, Silva M.V, Silva A.G. (2016). Antimicrobial activity of seaweeds of Pernambuco, northeastern coast of Brazil. Afr J Microbiol Res 10:312–318
13- Amara, D. GH., Zeïd, A., Khaled, KH., Elkhalifa, CH. A., Bachir, KH. and Mourad, S. M. (2016). Effects the application of some organic manures with nitrogen levels on the growth and productivity of potato in the Algeria south. International Journal of Agriculture and Environmental Research. ISSN: 2455-6939 Volume:2, Issue:4 14- Apaolaza V, Hartmann P, D’Souza C, Lopez CM. (2018). Eat organic-feel good? The relationship between organic food consumption, health concern and subjective wellbeing. Food Quality and Preference 63:51-62
15- Asha A, Rathi JM, Raja PD, Sahayaraj K (2012) Biocidal activity of two marine algal extracts against third instar nymph of Dysdrcus cingulatus (Fab.) (Hemiptera, Pyrrhocoridae). J Biopest 5:129–134
16- Asiegbu J. E. (1987). Effects of organic matter substrate sources and time of photosynthate - sink removal on flower and pod production in okra. Abelmoschus esculentus (L) Moench. East African Agriculture, Forestry Journal. 52(4): 293-297.
17- Attememe. J. Y. A. (2009). The effect of humic acid and sea weed extracts on the growth, chemical characteristics and oil characteristics of Rosmarinus officinalis L. the 6th scientific conference, Biology Dept.,
18- Ayeni, L. S. (2011). Comparative nutrient release from combined cocoa pod ash, poultry manure and NPK 20:10:10 fertilizer on major soil nutrients in southwest Nigeria - incubation study, International Journal of Soil Science, 1(1), pp 42-46 19- Babatola, J.O., (1989). Effects of some organic manures on nematodes in tomato cultivation. Pak. J. Nematol., 7: 39-46.20- Bakayaok, S.; D. Soro; C. Nindjin; D. Dao; A. Tschannen; O. Giradin and A. Assa. (2009). [ Effect of Cattle and Poultry Manure on Organic Matter Content and Adsorption Complex of Sandy Soil Under Cassava Cultivation (Manihot esculentacrantz)] Afri. J. Envi. Sci. Technol. 3(8): 190- 197.
21- Battacharyya. D. Babgohari. M. Z. Rathor. P. Prithiviraj. B. (2015). Seaweed extracts as biostimulants in horticulture. Scientia Horticulturae. Volume 196, Pages 39-48.
22- Beckman E.O. 1973. Organic fertilization vegetable farming luxury or necessity. Tech. Commun. ISHA. 29: 247. 23- Begum. M.; Bordoloi, B C., Singha, D. D. and Ojha, N. J. (2018). Role of Sea weed extract on growth, yield and quality of some Agricultural crops. Agricultural Research communication center. ISSN:0253-1496
24- Belanger, G, J. R. Walsh, J.E. Richards, P. H. Milburn, and N. Ziadi. (2002). Nitrogen fertilization and irrigation affects tuber characteristics of two potato cultivars. Amer. J. of Potato Res.,79:269-279.
25- Bhardwaj, V., Pandey, S.K. Manivel, P. Singh S.V. AND Dumar. (2008). Stability of indigenous and exotic potato processing cultivars in Himachal Pradesh hills. Proceedings of the Global Potato Conference, New Delhi, pp:22-21. 26- Blunden, G. (1991). Agricultural uses of seaweeds and seaweed extracts, Seaweed resources in Europe: uses and potential. pp. 65-81
27- Blunden. G and Wildgoose. PB. (1977). Effect of aqueous seaweed extract and kinetin on potato yield. Journal of Science of Food and Agriculture 28: 121-5.
28- Borisov, V. A. (2000). The Ecologically Safe And Environmentally Friendly Fertilization System. J. Potato and Vegetables, No 5, 19-23.
29- Burton, W. G. (1966). The distribution and composition of the dry matter in the potato tuber. In The Potato, p. 146. W. G. Burton, Ed., H. Veeman and N. V. Zonen Press, Wageningen, Holland.30- Chagirov, B. (1978). Effect of fertilizers on formation early and qualiyu of potato tubers. Trudy, Kazakhskit sels kohozyarst Vernnyl Institute. 18: 96-104 (F. C. ABST. 1978, 3, 78). 31- Cheung, Y.H. and Wong, M.H. (1983). Utilization of animal manures and sewage sludges for growing vegetables. Agric. Wastes, 5: 63-81. 32- Chindo, P.S. and Khan, F.A. (1990). Control of root-knot nematodes, Meloidogyne spp. on tomato, Lycopersicon esculentum mill, with poultry manure. Trop. Pest Manage., 36: 332-335.
33- Ciepiela GA, Godlewska A, Jankowska J (2016). The effect of seaweed Ecklonia maxima extract and mineral nitrogen on fodder grass chemical composition. Environ Sci Pollut Res 23:2301–2307
34- Colting, L. (1994). Irish Pain Nurses and Midwives Society, Researches on Vegetables, 25.P
35- Crouch, R. K., Mani, V. Beischel, C and Goletz P. (1990). Acautionary note: retinol in liposomes can auto-oxidize to form retinal. Invest. Ophthalmol. Vis. Sci. (ARVO Suppl.) 31, 112.
36- Cutter, E. (1978). Structure and development of the potato plant science symposium. Camden, N. J. 223p.
37- Darogkina, N. A. (1972). Potato Ed. Urajay. Minisk, 433 (in Russian).
38- Darzi, M.T., Haj SeydHadi, M. R.(2012). Effects of Organic Manure and Nitrogen Fixing Bacteria on Some Essential Oil Components of Coriander (Coriandrumsativum)”, International Journal of Agriculture and Crop Sciences, 4(12): 787-792
39- Dawood, Z. I. A. (2013). Influence of marine plant extracts (Soluamine, Alga 600) and methods of their addition in the growth and yield of two varieties of potatoes Rafidain Agriculture Journal, Volume (41) No. (1).
40- De - Lannoy G. and H. R. Romain. (2001). Crop Production in Tropical Africa. London, Mc. Graw Hill Publishers Ltd. New York. pp. 234-245
41- Dhargalkar V.K. and Pereira, N. (2005). Seaweed: promising plant of the mil-lennium. Sci Cul 71:60–66.42- Divya, K. Roja, M.N. and Padal, S.B. (2015) Influence of seaweed liquid fertilizer of Ulva lactuca on the seed germination, growth, productivity of Abelmoschus esculentus (L). Int J Pharmacol Res 5:344–346
43- Duke, J.A. and Atchley, A.A. (1984). - Proximate analysis. In: Christie, B.R. (ed.), The handbook of plant science in agriculture. CRC Press, Inc., Boca Raton, FL..
44- Efthimiadou, A., Bilalis, D., Karkanis, A., Froud-Williams, B., and Eleftherochopinos, I. (2009). Effects of Cultural System (Organic and Conventional) on Growth, Photosynthesis and Yield Components of Sweet Corn (Zea mays L.) under Semi-Arid Environment. Notulae Botanicae Horti Agrobotanici Cluj-Napoca, 37(2), 104-111.
45- Eichert. T, Burkhardt J, Goldbatch HE. (1998). Evidence for the uptake of large anions through stomatal pores. Botanica Acta. 111: 461-6.
46- El-Enany, A. M. (2005). Effect of different levels of nitrogen on growth, yield and quality of potatoes grown in sandy soils .M.Sc. Thesis, Faculty of Agriculture, Cairo University. Egypt.
47- El-Shoubaky, G. Salem, E. (2016). Effect of Abiotic Stress on Endogenous Phytohormones Profile in Some Seaweeds. International Journal of Pharmacognosy and Phytochemical Research; 8(1); 124-134
48- FAO (Food and Agriculture Organization of united Nation). (2000). Fertilizers and their uses. pp. 26-39.
49- FAOSTAT. (2016). http//.fao.org/faostat/en/# data/ QC (Accessed 28 January 2018).
50- Gharakhani, H., Mirhadi, S. M. J. and Yazdandoost, M. (2016). The effect of different foliar application amount and different times of seaweed using (Acadian) on potato yield and yield components. Journal of Current Research in Science, (1), 23-27.
51- Gollan, J. R. and J. T. Wright (2006). Limited grazing pressure by native herbivores on the invasive seaweed caulerpa. Taxi folia in a temperate. Australia Estuary Marine and Freshwater Research. 57(7): 685-694.52- Gomiero, T. (2017). Food quality assessment in organic vs. conventional agricultural produce: findings and issues. Applied Soil Ecology.
53- Grabowska, K.; Nowicka, A.; Szwejkowski, Z. (1997). Action and interaction of extreme air temperatures on the yielding of late varieties of potato in different regions in Poland- Fragmenta- Agronomica (Poland). V. 14 p.55.62. Distributed.
54- Grandy AS, Porter GA, Erich MS (2002). Organic amendment and rotation crop effects on the recovery of soil organic matter and aggregation in potato cropping systems. Soil Science Society of America Journal, 66: 1311- 1319.
55- Haraldsen, T. K ., A. Asdal., C. Ggrasdalen., L. Nesheim., T. N. Ugland. (2000). Nutrient balances and yiels during conversion from conventional to organic cropping systems on silt loam and clay soils in Norway. Biol. Agric. Hortic.17:229 – 246.
56- Harris, P.M. (1978). Mineral Nutrition-in The Potato Crop. The Scientific Basis For Improvement (edited by P.M.Harris), Chapman & Hall, London.
57- Hawkes, J.G. (1978). History of the potato. In: P.M Harris. (Ed) The potato crop pp. 1-14. Chapman and Hall, London. 58- Hochmuth, R.C., G.J. Hochmuth and M.E. Donley, (1993). Responses of cabbage yields, head quality, and leaf nutrient status, and of second-crop squash, to poultry manure fertilization. Proc. Soil Crop Sci. Soc. Florida, 52: 126-130.
59- Humera, A. and Iiqbal, J. In vitro techniques and mutagenesis for the genetic. (2010). improvement of potato cvs. Deseree and diament. Pak. J. Bot., 42, 1629-1637.
60- Hussein, M. J. and Abbas, J. A. (2017). The effect of organic and chemical fertilizers on some growth indicators and yield of the potato plant Solanum tuberosum L. Safran cultivar. The Jordanian Journal of Agricultural Sciences, Volume 13, No. 2.
61- Hyland, A. and Werner, V. (2000). Wheat and WHEAT IMPROvement. Agron. (2): 95- 103. publishing UK.
62- Ibrahim, A. J. KH. and AL- Hamdani, S. A. (2018). Effect of spraying seaweed extract on the yield of differentvarieties of potatoes (Solanum tuberosum L.). Journal of Agricultural, Environmental and Veterinary Sciences, Issue (4), Vol. (2).
63- Ikeh, A. O. ; Ndaeyo, N. U. ; Uduak, I. G. ; Iwo, G. A. ; Ugbe, L. A. ; Udoh, E. I. ; Effiong, G. S. (2012). Growth and yield responses of pepper (Capsicum frutescensL.) to varied poultry manure rates in Uyo, southeastern Nigeria. Journal of Agricultural and Biological Science .Vol.7 No.9 pp.735-742 ref.37
64- Jensen, E. (2004). Seaweed; Fact or Fanc. From the Organic
Broadcaster, Published by Moses the Midwest Organic and Sustainable Education. From the Broad Caster. 12(3): 164-170
65- John, L.W., Jamer, D.B., Samuel, L.T., Wanner, L.W. (2004). Soil fertility and Fertilizers: An introduction to Nutrient Management. Pearson education, India, PP. 106 – 153.
66- Juliano, B.O. (1999). Comparative nutritive value of various staple foods. Food Rev. Int.15:399-434. 67- Kahl, J. and Rembiałkowska, E. (2014). Research on organic food quality needs a system approach. Journal of the Science of Food and Agriculture 94(13):2577 68- Kalaivanan C., Chandrasekaran, M., and Venkatesalu, V. (2012). Effect of seaweed liquid extract of Caulerpa scalpelliformis on growth and biochemical constituents of black gram (Vigna mungo (L.) Hepper). Phykos 42 (2): 46-53.
69- Khan K, David H, Alan TC, Balakrishnan P (2011) Bioassay to detect Ascophyllum nodosum extract-induced cytokinin-like activity in Arabidopsis thaliana. J Appl Phycol 23:409–414
70- Khan, W. Rayirath, U. Subramanian, S. Jithesh, M. Rayorath, P. Hodges, D. M. Critchley, A. Craigie, J. Norrie, J. & Prithiviraj, B. (2009). Seaweed Extracts as Biostimulants of Plant Growth and Development. Journal of Plant Growth egulation volume 28, pages386–399. 71- Kingman, A.R. and Moore, J. (1982). Isolation, purification and quantification of several growth regulating substances in Ascophyllum nodosum (Phaeophyta). Bot Mar 25:149–15472- Krauss, A. (1978 a). Tuberization and ABA contents in Solanum tuberosum as affected by nitrogen nutrition. Potato Research, 21, p 183-193.
73- Krauss, A. (1978 b). endogenous regulation mechanisms in tuberization of potato plants in relation to environmental conditions. Papers of 7th Triennial EAPR Conference, Held Poland, 1978, p 47-84.
74- Krauss, A. and Marschner, H. (1976). Influence of nitrogen nutrition and application of growth regulation on tuber initiation and application in potato plants. Z. Pflanznernahrung und Bodenkunde, 139 (2), 143-155. 75- Kuepper, G (2003). Foliar fertilization appropriate technology transfer for rural areas (ATTRA). National sustainable agriculture service. WWW. Attar.ncut.org.
76- Kumar, D. and R. Ezekiel. (2006). - Effect of physiological and biochemical attributes of potato cultivars Kufri Lauvkar and Atlantic on their chipping quality. Potato J. 33, 50-55.
77- Kumar, S.P., Kumar, C.V. and Bandana, B. (2010). Effect of salicylic acid on seediling growth and nitrogen metabolism on plants.J.Stress Physiol.Biochem.6 (3):102113 ilium longiflorum cultivar 'Ace' . HortiScience, 2: 15-16..
78- Kumari, R.; Kaur, I.and Bhatnagar, A. K. (2011). Effect of aqueous extract of Sargassum johnstonii Setchel & Gardner on growth, yield and quality of Lycopersicon esculentum Mill. J. Appl. Phycol. 23: 623 – 633
79- Lachman, J; Hamouz. K; Orsak, M; Pivec, V. (2000). Potato tubers as a significant source of antioxidants in human nutrition. Rostlinna-Vyroba., 46: 5, 231-236; 50 ref. 80- Lernoud J, Willer H. (2017). The World of Organic Agriculture. Statistics and Emerging Trends . Bonn: Research Institute of Organic Agriculture (FiBL), Frick, and IFOAM-Organics International.
81- Lisinska, G.; Peksa, A.; Leszczynski, W.; Golachowski, A. (1991). Effect of cultural conditions on a technological value of potatoes Bliza and Bobr varieties for French fries processing.Zeszyty-Naukowa-Akademii-Rolniczej-We- WroclawiuTechnologia-Zywnosci (Poland). (no.215). p. 27-39. Distributed 1993. 82- Lobley, M. Butler, A. Reed, M. (2009). The contribution of organic farming to rural development: an exploration of the socio-economic linkages of organic and non-organic farms in England. Land Use Policy 26(3):723-735
83- Løpez-Mosquera, M. E. and Pazos, P. (1997). Effect of seaweed on potato yield and soil chemistry. Biological Agriculture and Horticulture. 14:199-205
84- Mahmoud, S. A. W. (2014). Some potato varieties respond to spraying with Org 306 organic nutrients under autumn cultivation conditions in the central region of Iraq. Al-Anbar Journal of Agricultural Sciences, Fourth Scientific Conference Research, Volume: 12, Special Issue. ISSN: 1992-7479.
85- Marks, N.; Szmigiel, A.; Krzysztofik, B.; Sobol, Z.; Baran, D. (1998). Effect of phosphorus fertilization on leaf assimilation area, yields and mechanical damages of potato tubers- Inzynieria. Rolnicza (Poland). (No.5) p.123.132.
86- Mathur, C.; Rai S, Sase N, Krish S, Jayasri MA. (2015). Enteromorpha intestinalis derived seaweed liquid fertilizers as prospective biostimulant for Glycine max. Braz Arch Biol Technol 58:813–820
87- Maynard A. A. (1991). Intensive vegetable production using composted animal manure. Bulletin of Connecticut Agricultural Experiment Station No. 892: 13.
88- Mehdi M, Saleem T, Rai HK, Mir MS, Rai G. (2008). Effect of nitrogen and FYM interaction on yield and yield traits of potato genotypes under Ladakh condition. Potato Journal. 35:126-129.
89- Menzel, C. M. (1985). Tuberization in potato at high temperatures: responses to exogenous gibberellins, cytokinin and ethylene. Potato Research, 28, 263- 266.
90- Michalak I, Chojnacka K (2015) Algae as production systems of bioactive compounds. Eng Life Sci 15:160–176 91- Michelsen J. (2001). Recent development and political acceptance of organic farming in Europe. Sociologia Ruralis 41(1):3-20.92- Minhas, J.S., D. Kumar, T.A. Joseph, B.T. Raj, S.M.P. Khurana, S. K. Pdey, S.V. Sindh, B.P. Singh and P.S. Naik. Kufri Surya. (2006). A new heat-tolerant potato variety suitable for early planting in North-western plains, peninsular India and processing into French fries and chips. Potato J., 33, (1-2):35-43.
93- Mohammad, M. J.; Zuraiqi, S.; Quasmeh, W. and Papadopoulos, I. (1999). Yield response and nitrogen utilization efficiency by drip-irrigated potato. Nutrient Cycling in Agroecosystems volume 54, pages243–249.
94- Moorby, J. (1978). The physiology of growth and tuber yield. In The Potato Crop, the scientific basis for improvement. Ed. By Harris, P.M. pp 153-194, 95- Murphy K M, Campbell K G, Lyon S R and Jones S S. 2007.Evidence of varietal adaptation to organic farming systems. Field Crops Research 102: 172–77.
96- Najm, A. A., Hadi, M. R. H. S., Fazeli, F., Darzi, M. T., Rahi, A. (2012). Effect of Integrated Management of Nitrogen Fertilizer and Cattle Manure on the Leaf Chlorophyll, Yield, and Tuber Glycoalkaloids of Agria Potato”, Communication in Soil Science and Plant Analysis, 43(6): 912-923
97- Nayak D. C., Varadachari, C., Ghosh, K. (1990). Influence of organic acids functional groups of humic substances in complexation with clay minerals. Soil. c T.149.5:268 - 271.
98- Naz, F., Ali, A., Iqbal, Z., Akhtar, N., Asghar, S. and Ahmad, B. (2011). Effect of different levels of NPK fertilizers on the proximate composition of potato crop at Abbottabad. Sarhad J. Agric. 27(3):353-356. 99- Nędzarek, A. & RakusaSuszczewski, S. (2004). Decomposition of macroalgae and the release of nutrients in Admiralty Bay, King George Island, Antarctica. Polar Bioscience, 17, 26–35.Google Scholar
100- Neuhoff, D., and Kopke, U. (2000). Rottemist dungung und sortenwahl in organisehen kartoffelbau. Einfluss auf Nahrsttoffrer sorgung des Krautes, Ertrag und Knollengualitat.Veroff Arbeitsgemeinschaft Kartofforschung Detmold. (21), pp.4-9. 15. 101- O'Dell, C. (2003). Natural plant hormones are bio stimulants helping plants develop high plant antioxidant Activity formultiple benefits. Virginia Vegetable, Small Fruit and Specialty Crops. 2(6):1-3. 102- Ogbonna, P.E. (2008). Effect of combined application of organic and inorganic fertilizers on fruit yield of Eggplant (Solanum melongena). Proc. of the 42nd Ann.Conf. of Agric. Soc. of Nigeria. (ASN). Abakaliki, Nigeria, Oct.19-23. p. 103- Opara, N.C. and J.E. Asiegbu, (1996). Nutrient content of poultry manures and the optimum rate for Eggplant fruit yield in a weathered tropical alfisol. Biol. Agric. Hortic., 13: 341-350.
104- Ozdemir, G., Karabay, NU., Dalay, MC., Pazarbasi, B. (2004). Antibacterial activity of volatile component and various extracts of Spirulina platensis. Phytother Res 18:754–757.
105- Pacholczak A, Nowakowska K, Pietkiewicz S (2016a). The effects of synthetic auxin and a seaweed-based biostimulator on physiological aspects of rhizogenesis in ninebark stem cuttings. Not Bot Horti Agrobo 44:85–91.
106- Pacholczak, A., Szydlo, W., Jacygrad, E. and Federowicz, M. (2016b). Effect of auxins and the biostimulator algaminoplant on rhizogenesis in stem cuttings of two dogwood cultivars (cornus alba ‘AUREA’ and ‘Elegantissima’). Acta Sci Pol Hortorum Cultus 11:93–103.
107- Panda. D, Pramanik K, Nayak BR. (2012). Use of seaweed extracts asplant growth regulators for sustainable agriculture. Int J Bio-resourStress Manag 3:481–48.
108- Pandey, S.K., S.V. Singh, P. Kumar, D. Kumar and P. Manivel. (2004). Sustaining potato chipping industry from Western and Central Uttar Pardesh: adoption of suitable varieties. Potato J. 31, 119-127.
109- Peksa, A. (1991). Effect of crop culture factors and storage conditions on the chemical composition of potatoes and quality of the subsequent chips. Zeszyty-Naukowe-Akademii-Rolniczej-We-Wroclawiu- Technologia- Zywnosci (Poland). (no.215). p. 11-26.
110- Piringer, A. A. (1962). photoperiodic responses of vegetable plants. In « Proceedings of plant Science Symposium, pp.173-185 camplell soup co. Camden, N.J.111- Prajapati, A., Patel, C. K., Singh, N., Jain, S. K., Chongtham, S. K., Maheshwari, M. N., Patel, C. R. and Patel, R. N. (2016). Evaluation of seaweed extract on growth and yield of potato. Environment & Ecology. 34 (2): 605—608.
112- Pramanick, B., Brahmachari, K. Ghosh, D. and Bera. P. S. (2018). Influence of foliar application seaweed (Kappaphycus and Gracilaria) saps in rice (Oryza sativa)–potato (Solanum tuberosum)–blackgram (Vigna mungo) sequence. Indian Journal of Agronomy 63 (1): 7__12
113- Raghunandan, B.L. Vyas, R.V. Patel, H.K. and Jhala, Y.K. (2019). Perspectives of Seaweed as Organic Fertilizer in Agriculture In: Panpatte D.G. and Jhala Y.K. (eds) Soil fertility management for sustainable development. p 267-289
114- Ramarajan S., Henry, JL., Saravana, GA. (2013). Effect of seaweed extracts mediated changes in leaf area and pigment concentration in soybean under salt stress condition. RRJoLS 3:17–21
115- Rao, G. M. N, Chatterjee, R. (2014). Effect of seaweed liquid fertilizer from Gracilaria textorii and Hypnea musciformis on seed germination and productivity of some vegetable crops. Univ J Plant Sci 2(7):115–120 116- Reddy, A. S. (2016). Impact of Seaweed Liquid Fertilizers on Productivity of Blackgram [Vigna mungo (L.) Hepper]. Int. J. Curr. Res. Biosci. Plant Biol. 3(8): 88-92 117- Reddy, T.Y. and G.H. Reddi, (1995). Principles of Agronomy. 2nd Edition, Kalyani Publishers, New Delhi, India, Pages: 223. 118- Reganold JP, Wachter JM. (2016). Organic agriculture in the twenty-first century.Nature Plants 2 (2): 15221
119- Renuka Bai, N.; Banu, L.N.R.; Prakash, J.W. and Goldi, S.J. (2007). Effects of Asparagopsis taxiformis extract on the growth and yield of Phaseolus aureus. J Basic Appl Biol 1:6–11
120- Riley, H. (2002). Properties of various soil on potato nutrition and quality a gravelly Loam soil in southern Norway. Acta Agriculture scandinavica, B. 52. (2-3).: 86-95.
121- Roostalu, H.; Kullkepp, P. and Viralt, R. (2001). Application of nitrogen fertilizers in Estonian Agriculture.Research for Rural Development Proceedings of the inter national Scientific conference, Jelgavae, Latvia. Latvia university of Agriculture, ,pp. 63-67.
122- Roschke , M . and E . Peschel . (1988). Gewinnung and Anwenduneg eing streufahigen Dungers aus, Gefluge lexkrementen, fedwirtschaft , T . 29 . N 11 , S 522– 524 .
123- Ross, M. (1989). Potato Breeding problems and perspectives. Berlin and Hamburg.
124- Salman, S. R., Abu Husien.S. D, Abdelmawguod and El-Nemr. M.A. (2005). Fruit yield and quality of watermelon as affected by hybrids and humic acid application. Journal of Applied Sciences Research 1(1): 51-58.
125- Sanchez-sanchez A., J. Snchez-andreu., M. Juarez., J. Jorda., D. Bermudez. (2002). Humic substances and amino acids improve effectiveness of chelate Feeddha in Lemon trees. J. Plant Nutrit. Vol. 25 (11):2433- 2442.
126- Sarhan, H. and Taha, Z. (2011). Effect of humic acid and seaweed extracts on growth and yield of potato plant (Solanum tubersum L) desiree CV. College of Agric., Duhok Univ., Iraq. ISSN 1815-316Xvol. (39) No (2).
127- Selim, E. M.; A. A. Mosa and A. M. El-Ghamry. (2009). Evaluation of Humic Substances Fustigation Through Surfacr and Subsuface Drill Irrigation Systems on Potato Grown Under Egyptian Sandy Soil Conditions Agric. Water Management. 96: 1218- 1222.
128- Shahbazi F, Nejad SM, Salimi A, Gilani A. (2015). Effect of seaweed extracts on the growth and biochemical constituents of wheat. Int J Agric Crop Sci 8:283–287
129- Sharif Hossain, A.B.; Hakim, M.A. and Justus, M. (2003). Effect of manure and fertilizers on the growth and yield of potato: Pakistan Journal of Biological Sciences, 6(14):1243-1246
130- Shri Devi, S.D.K and Paul, J.P. (2014). Influence of seaweed liquid fertilizer of Gracilaria dura (ag) jag (red seaweed) on Vigna radiata (L) R wilczek, in Thoothukudi, Tamil Nadu, India. World J Pharm Res 3:968–978131- Sims, J. T. and Wolf, D. C. (1994). Poultry waste management: Agricultural and environmental issues. Adv. Agron. 52:1. 132- Singh, S.K. Zodape, S. T., Lal, S. S. and Singh. R. K. (2017). Fertilizer Potential of Sea Weed (Kappaphycus and Gracilaria) Saps in Potato Crop. Journal of AgriSearch 4(1): 31-35. 133- Sivasankari, S. Venkatesalu, V. Chandrasekaran, M. and Anantharaj. M. (2006). Effect of seaweed extracts on the growth and biochemical constituents of Vigna sinensis. Bioresource Technology 97(14):1745-51.
134- Sridhar, S. and Rengasamy, R. (2010). Significance of seaweed liquid fertilizers for minimizing chemical fertilizers and improving yield of Arachis under field trial. Recent Research in Science and Technology, 2(5): 73-80.
135- Srijaya TC, Pradeep PJ, Chtterji A. (2010). Effect of seaweed extract as an organic fertilizer on the growth enhancement of black mustard plant. J Coast Environ 1:137–150
136- Strong, W.M. and R.J. Soper. (1974). Phosphorus utilization by flax, wheat, rape and buck wheat from band or pellet– Like application. I- Reaction zone root prlideration. Agron. J., 66: 597-601. 137- Tarakhovskaya, E.R., Maslov, Y.I. and Shishova, MF. (2007). Phytohormones in algae. Russ J Plant Physiol 54:186–194
138- Temple, W. D. and Bomke, A. A . (1988). Effects of kelpMacrocystis integrifolia on soil chemical properties and crop response. Plant and Soil 105, 213–222.
139- Thinakaran, T. and Sivakumar, K. (2013). Antifungal activity of certain seaweeds from Puthumadam coast. Int J Res Rev Pharm Appl Sci 3:341–350
140- Thomas, S. C. L. (1996). Nutrient weeds as soil amendments for organic cally growth herbs. Jour of Herbs, Spices and Medicinal Plant. 4(1): 3-8. 141- Thompson, H.C. and Kelly, W.C. (1957). Vegetable Crops. 5th Edition Mc Graw. Hill Book Co. New York. pp:372-404.142- Tisdale, S.L. W.L. Nelson, J.D. Beaton and Havlin. J. L. (1997). Soil fertilization prentice. Hall of, India. 143- Titiloye, E.O., Lucas, E.O. and Agboola, A.A. (1985). Evaluation of fertilizer value of organic waste materials in South Western Nigeria. Biol. Agric. Horticult., 3: 25-27.
144- Tolestov, F. B. (1987). The influence of fertilization in the yield and quality of crop production; Moscoow. Agropromiz date. ,132-136. (in Russian).
145- Trehan, S.P. Grewal, J.S. (1991). Effect of time and level of potassium application on tuber yield and k composition on plant tissues and tubers of two potato cultivars. India. Joumal of the Indian potato Association. 18 (3\4): 115-121.
146- Udoh D. J., Ndon B. A., Asuquo. P. E. and Ndaeyo N. U. (2005). Crop Production Techniques for the Tropics. Concept Publication, Lagos, Nigeria. p. 446.
147- Ullah, M.S; Islam; M.S. Islam; M.A. and Haque, T. (2008). Effects of organic manures and chemical fertilizers on the yield of brinjal and soil properties. Department of Horticulture, Bangladesh Agricultural University, Mymensingh-2202, Bangladesh. 148- Verchuur, G. (1993). Organic farming: A rapid growing business in Nigeria. Biotechnol. Dev. Monitor, 16: 6-7. 149- Ware, G.W. and J.P. McCollum, (1980). Producing Vegetable Crops. The Interstate Printers and Publishers, Danville VA., Pages: 607.
150- Watt, B.K.; Merrill, A.L. (1963). Composition of foods. U. S. Dept. Agr.,Agr. Handbook No.8.190p.
151- Weil R. R. and Kroonje W. (1979). Physical conditions of Davidson clay loam after five years of poultry manure application. J. Environ. Qual. 18: 387-392.
152- Westermann, D. T. (2005). Nutritional requirements of potatoes. American Journal of Potato Research volume 82, pages301–307.
153- Wolfe M S, Baresel J P, Desclaux D, Goldringer I, Hoad S, Kovacs G, Löschenberger F, Miedaner T, Østergård H andvan Bueren E T L. (2008). Developments in breeding cereals for organic agriculture. Euphytica. 163:323–346
154- Zbakh H., Chiheb H., Bouziane H., Sa’nchez VM., Riadi H. (2012). Antibacterial activity of benthic marine algal extracts from the Mediterranean coast of Morocco. J Microbiol Biotechnol Food Sci 2:219–228
155- Zhang, X. and Ervin, E. (2008). Impact of Seaweed Extract-Based Cytokinins and Zeatin Riboside on Creeping Bentgrass Heat Tolerance. Crop Science Society of America. VOL. 48. 156- Zodape, S. T., S. Mukherjee, M. P. Reddy, and D. R. Chaudhary. (2009). Effect of Kappaphycus alvarezii (Doty) Doty ex silva. extract on grain quality, yield and some yield components of wheat (Triticum aestivum L.). International Journal of Plant Production 3: 97–101 157- Zodape, S.T., J. S. Kawarkhe, J. S. Patolia and A. D. Warade. (2008). Effect of liquid seaweed fertilizer on yield and quality of okra. Journal of Sci. and Industrial Research 67: 1110-1117