أجريس - النظام الدولي للعلوم الزراعية والتكنولوجيا

Growth and Productivity of Salad Burnet (Poterium sanguisorba L) under effect of Humic Acid Application and Different Irrigation times

2023

T.H, Nour | D, Serein | A.M, Al-Aswad

الكلمات المفتاحية الخاصة بالمكنز الزراعي (أجروفوك)

المعلومات البيبليوغرافية
The Arab Center for the Studies of Arid Zones and Dry Lands | The Arab Center for the Studies of Arid Zones and Dry Lands
المجلد 16 الإصدار 1, 1 ترقيم الصفحات 128 - 135 الرقم التسلسلي المعياري الدولي (ردمد) 2305-5243
مواضيع أخرى
Poterium sanguisorba; Humic acid; Salad burnet; Plant height and dry weight; Irrigation intervals
اللغة
عربي
ملاحظة
Reference 1.     Abdel-Mawgoud, A.M.R.; El-Greadly, N.H.M.; Helmy, Y.I.; Singer, S.M.(2007) Responses of Tomato Plants to Different Rates of Humic-based Fertilizer and NPK Fertilization, Journal of Applied Sciences Research, 3(2): 169-174. 2.     Abdullahi A.A.; B.L., Aliero; A.A., Aliero; A.A., Zuru (2013). Effects of irrigation regime, organic and inorganic mineral source on growth and yield components of switchgrass (Panicum virgatum L.) in upland and lowland conditions in Sokoto, Nigeria. Pakistan Journal of Biological Sciences, 16(2): 51–58. 3.     Abhari, A. and E., Gholinezhad (2019). Effect of humic acid on grain yield and yield components in chickpea under different irrigation levels. Journal of Plant Physiology and Breeding, 9 (2): 19- 29. 3.Abo- Zanat, M. (2001). Terminology for grazing lands and grazing animals. Lectures in grazing management work shop. Conservation and sustainable use of dry land agro-biodiversity in Amman, Jordan. 4.     Adani, F.; Genevini, P.; Zaccheo, P.; Zocohi, (G.1998). The effect of commercial humic acid on Tomato plant growth and mineral nutrition. Journal of plant nutrition . 21(3) : 561 –575. 5.     Atiyen,R.M.:Lees.;Edward,C.A.;Arancon,N.Q.;Meter,J.D.(2002).The infiuence of humic acid derived from earth worm processed organic wastes on plant growth .BiosoursceTechnology (ISSN09608524)  Vol:84.N:1.PP:7-14. 6.     Daur,I.(2016).Feed value of blue panic ( | Panicum antidotale Retz | .) Grass at different growth stage and under varying levels of humic acid in saline conditions. Turkish Journal of Field Crops, v.21,n.2,p.210-217.   7.     Duncan, D.B. (1955). Multiple range and multiple “F.test." Biometrics, 11:1- 42. 8.     Farooq, M., S. M. A. Basra, A. Wahid, Z. A. Cheema, M. A. Cheema And A. Khaliq. 2008. Physiological Role Of Exogenously Applied Glycinebetaine In Improving Drought Tolerance Of Fine Grain Aromatic Rice (Oryza Sativa L.). J. Agron. Crop Sci., 194: 325-333. 9.     Germ , M., Urbanc, O. B., and Kocjan, A. D.(2005).The response of Sun flower to acute disturbance in water availability. Acta Agriculture Solvenica; 85 (1) :135-141. 10.  Ghazanfar, S. A.; Miller, A. G.; Mcleish, I.; Cope, T. A.; Cribb, P. and Al-Rawahi, S. H. (1995). Plant conservation in Oman. Part-I. A study of the endemic, regionally endemic and threatened plants of the sultanate of Oman. April 1995.15 p. Sultan Qaboos University, Oman. 11.  Hardegree, S. P.; T. A. Jones; B. A. Roundy; N. L. Shaw and T. A. Monaco (2016). Assessment of range planting as a conservation practice. Rangeland Ecology and Management, 69:237–247. 12.  Kalyoncu,O.;S.Akinic and .Bozkurt(2017).the effect of humic acid on growth and ion uptake of mug bean (Vigna radiate (L.)R. Wilczek) grown under salt stress.J.Agric.Res.,12(49):2447-3460. 13.  Kh, A. A. (2015). Effect Of Salicylic Acid And Abscisic Acid On Morpho-Physiological And Anatomical Characters Of Faba Bean Plants ( Viciafaba L .) Under Drought Stress. 6(11), 1771–1788. 14.  Kharin, N. Tateishe, R. Harahsheh, H. (2000). Anew Desertification Map of Asia. Desertifiction control Bulletin. series No.1.united Nations Environment programme, p5-17. 15.  Langelltti, R.; Caprio, E.; Bianco, M.D.; Errico, EP.(1997). Effetto Di un substrato di acidi umici e zeatina sullo sviuppo del nematode galligeno danoso al pomodoro Notis.Protez.Piante.7:123-129. 16.  Latif, H. H. (2014). Physiological Responses Of Pisum Sativum Plant To Exogenous Aba Application Under Drought Conditions. 46(3), 973–982. 17.  Papova, A.V.(2002).Utilization of organic fertilization . Saint-Peterosburg. (Ed) .Diment. pp:160.Russian. 18.  Pinton, R.; Cesco, S.; Lacolettig, G.; Astolfi, S.; Varanini, Z.(1999).  Modulation of No3 uptake by water-extractable humic substances: involvement  of root plasma membrane H+ATPase. Plant and Soil. Vol.215(2).pp: 155-161. 19.  Saruhan, V.; A., Kusvuran and S., Babat (2011). The effect of different humic acid fertilization on yield and yield components performances of common millet (Panicum miliaceum L.). Sci Res Essays 6: 663–669. 20.  Serenella, N; Pizzeghelloa, O.; Muscolob, A.; Vianello, A. (2002). Physiological effect of humic substances on higher plants. Soil Biology and Biochemistry , 34. pp: 1527-1536. 21.  Traversa A.; E., Loffredo; A.J., Palazzo; T.L., Bashore and N., Senesi (2013). Enhancement of germination and early growth of different populations of swtichgrass (Panicum virgatum L.) by compost humic acids. In: Xu, editor. Functions of natural organic matter in changing environment; p. 1051-1054. 22.  Turkmen, O.; Dursun, A.; Turan, M.; Erdinc, C.(2004). Calcium and humic acid effect seed germination, growth and nutrient content of Tomato seedling under saline soil conditions. Act Agriculture. Scandinavia Section B,Soil Plant Science. V: 54. No:3. pp: 168 -174. 23.  Zhang, X. and Ervin, E. H.(2004). Cytokinin-containing seaweed and humic acid extracts associated with creeping bent grass leaf cytokinins and drought resistance. Crop Sci. 44: 1737-1745.
الرقم الدولي الموحد للكتاب (ردمك)
2305-5243
النوع
Journal Article

2024-06-05
EndNote
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