بررسی اثر قطع آبیاری و محلول‌پاشی اسید هیومیک بر برخی ویژگی‌های زراعی، فیزیولوژیکی و کیفی لوبیا‌قرمز رقم D81083

نوع مقاله : مقالات پژوهشی

نویسندگان

دانشگاه آزاد اسلامی اراک

چکیده

به‌منظور بررسی واکنش لوبیا‌قرمز رقمD81083 به قطع آبیاری و اسید هیومیک، آزمایشی به‌صورت کرت‌های خُرد‌شده در قالب طرح بلوک‌های کامل تصادفی با سه تکرار در سال زراعی94-1393 در ایستگاه تحقیقات کشاورزی اراک اجرا شد. سطوح آبیاری به‌عنوان عامل اصلی در سه سطح شامل آبیاری کامل، قطع آبیاری در مرحله گلدهی و در مرحله غلاف‌دهی و محلول‌پاشی با اسید هیومیک به‌عنوان عامل فرعی در سه سطح شامل عدم مصرف اسید هیومیک، مصرف 5/1 و سه لیتر در هکتار اسید هیومیک درنظرگرفته شد. نتایج نشان داد که قطع آبیاری بر کلیه صفات مورد بررسی تأثیر معنی‌داری داشت. در اکثر صفات مهم اندازه‌گیری‌شده مانند عملکرد دانه، محلول‌پاشی اسید هیومیک هم در شرایط آبیاری کامل و هم در شرایط قطع آبیاری در مرحله گلدهی و غلاف‌دهی در مقایسه با تیمار شاهد موجب افزایش معنی‌دار شد. در مورد عملکرد دانه و وزن صد‌دانه از نظر مصرف اسید هیومیک بین مقادیر 5/1 و سه لیتر در هکتار تفاوت معنی‌داری مشاهده نشد. بیشترین میزان پروتئین، آهن و روی دانه و همچنین مقدار کلروفیل در تیمار قطع آبیاری در زمان گلدهی به‌دست آمد. از بین اجزای عملکرد تعداد دانه در غلاف بیشترین همبستگی را با عملکرد دانه داشت. بر اساس نتایج به‌دست‌آمده اثر قطع آبیاری در مرحله غلاف‌دهی مشابه اثر تیمار شاهد بود و از طرفی به‌نظر می‌رسد در بهبود خصوصیات زراعی، کیفی و فیزیولوژیکی لوبیا اسید هیومیک می‌تواند مؤثر باشد.

کلیدواژه‌ها


1. Abvali Parizi, M., Moafpourian, G.H., and Yasrebi, G. 2014. Effect of humic acid and zinc on the leaf surface and dry matter weight of corn. Second National Conference on Sustainable Agriculture and Natural Resources. October 23, 2014. Tehran University. p. 4. (In Persian).
2. Arancon, N.Q. 2003. Effects of vermicomposts on growth and marketable fruits of field-grown tomatoes, peppers and strawberries. The 7th International Symposium on Earthworm Ecology Cardiff Wales. June 6, 2002. p. 49.
3. Arnon, A.N. 1967. Method of extraction of chlorophyll in the plants. Agronomy Journal 23: 112-121.
4. Ayin, A. 2012. Effect of eliminating of irrigation at different growth stage on seed yield and some agronomic traits of two sesame genotypes. Journal of Seed Plants 29(2): 40-48.
5. Ayuo, M., Hernandez, T., Garcia, C., and Pascual, J.A. 1996. Stimulation of barley growth and nutrient absorption by humic substances originating from various organic materials. Bioresource Technology 57: 251-257.
6. Baghaei, N. 2005. Effects of water stress at different stages of growth and yield and yield components bean. Master's Thesis, Islamic Azad University of Karaj. (In Persian with English Summary).
7. Bayat, A. 2008. Effects of water stress on yield and yield components of new kind of bean in Khomain. MSc. Thesis. University of BuAlisina, Hamedan. (In Persian with English Summary).
8. Borji, M., Ghorbani, M., and Sarlak, M. 2007. Some seed traits and their relationship to seed germination, emergence rate electrical conductivity in common bean. Asian Journal of Plant Sciences 6(5): 781-787.
9. Boutra, T., and Sanders, E.E. 2001. Influence of water stress on grain yield and vegetative growth of two cultivars of bean. Journal of Agronomy and Crop Science 187: 251-257.
10. Canellas, L.P. Facanha, A.Q., Olivares, F.L., and Facanha, A.R. 2002. Humic acids isolated from earthworm compost enhance root elongation, lateral root emergence, and plasma membrane H-ATPase activity in maise roots. Plant Physiology 130: 1951-1957.
11. Dorri, H., Bayat, A., Sepehri, A., and Ahmadvand, G. 2010. Effects of water stress on yield and yield components of pinto bean genotypes. Iranian Journal of Crop Science. 12(1): 42-54. (In Persian).
12. El-Bassiony, A.M., Fawzy, Z.F., Abd EL-baky, M.M.H., and Mohmud, M.R. 2010. Response of bean plants to mineral fertilizers and humic acid application. Research Journal of Agricaltural and Biological Sciences 6(2): 169-175.
13. El-Tayeb, M.A. 2005. Response of barley grains to the interactive effect of salinity and salicylic acid. Plant Growth Regulation 45: 215-224.
14. Emadi, N., Jahanbin, Sh., and Baluchi, H. 2012. Effect of drought stress and plant density on yield, yield components and some morphological traits beans in Yasouj. The 12th Iranian Crop Science Congress. September 14, 2012. Islamic Azad University. Karaj. p. 1-5. (In Persian).
15. Emami, A. 1996. Methods of plant analysis. Journal of Research Organ Education and Agricultural Extension. 9(2): 11-28.
16. Farajzadeh Memari Tabrizi, N., and Rashidi, V. 2011. Drought effects on morphological traits of bean genotypes. Annals of Biological Research 2(5): 95-99.
17. Forghani, V., and Gavanmard, A. 2005. Effect of Humic acid and folic and various additives on the number of different soils. The 9th Soil Science Congress, September 2, 2005. Soil Conservation and Watershed Management Research Center. Tehran. p. 2. (In Persian).
18. Frahm, M.A., and Rosas, J.C. 2004. Breeding beans for resistance to terminal drought in the lowland tropics. Euphytica 136(2): 223-232.
19. German, C., and Teran, H. 2006. Selection for drought resistance in dry bean landrane and cultivars. Crop Science 46: 2111-2120.
20. Ghanbari, A., Shakiba, M., Abasian, A., and Mousavi, H. 2012. Evaluation of sensitivity and drought resistance index in bean genotypes. The 5th Pulse Crop Congress, March 7, 2012. Tehran University. p. 1-4.
21. Ghobadi, R. 2010. Evaluate the effects of various levels of drought stress and nitrogen fertilizer on leaf relative water content, percentage of carbohydrate, protein, fat and hectoliter seed of corn (S.C. 704). Thesis, University of Boroujerd. Iran. (In Persion with English Summary).
22. Habibi, G. 2011. Influence of drought on yield and yield component in white bean. World Academy of Science. Engineering and Technology 55: 244-253.
23. Haghparast, M., Malekifarahani S., Sinki, G., and Zareei, Gh. 2011. Effect of reducing the negative drought stress in chickpea using humic acid and seaweed extracted. Journal Crop Science 2(1): 59-71.
24. Jahani, M., Sohrabi, R., and Doaei, F. 2012. The effects of irrigation, the use of super absorbent polymer in soil and foliar application of humic acid on the yield of red beans in Mashhad condition. The 12th National Conference on Water and Reduce Evaporation. August 5, 2012. Shaid Bahonar University. Kerman. p. 1-6. (In Persian).
25. Jiang, Y., and Huang, N. 2001. Drought and heat stress injury to two cool-season turf grasses in relation to antioxidant metabolism and lipid proxidase. Crop Science 41: 436-442.
26. Kafi, M., and Rostami, M.2007. The effect drought stress on the growth 3 kinds of genotypes on yield and yield components, oil percentage on safflower in irrigation with saline water. Iranian Journal of Field Crops Research 9(3): 525-534.
27. Karpinski, S.H., Gabrys, A., and Mateo, B. 2003. Light perception in plant disease defense signaling. Current Openion in Plant Biology 6(4): 390-396.
28. Katkat, A.V., Celik, H., Turan, M., and Asic, B. 2009. Effect of soil and foliar application of humic acid substances on dry weight and mineral nutrient uptake of wheat under calcareous soil conditions. Australian Journal of Basic and Applied Sciences 3: 1266-1273.
29. Kaya, M. 2005. Effect of pre-sowing seed treatment with zinc and foliar spray of humic acid s of yield of common bean. International Journnal of Agricultural and Biological Engineering 6: 875-878.
30. Khoshvaghti, H. 2006. Effect of water limitation on growth rate, grain filling and yield of three pinto bean cultivars. MSc. Thesis. Tabriz Universit. Iran. (In Persion with English Summary).
31. Koocheki, A., and Banayan Aval, M. 1994. Grain Legume Cropping. Mashhad Jahad Daneshgahi Publisher.
32. Krizek, D.T., Britz, S.J., and Mirecki, R.M. 1998. Inhabitory effects of ambient levels of solar UV-A and UV-B radiation on growth of cv.New Red fire lettuce. Physiologiaplantarum 103(1): 1-7
33. Mahlouji, M., Mousavizadeh, S.F., and Karimi, H. 2001. Effect of drought stress and sowing date on pino bean grain yield and yield components. Journal of Agricultural and Natural Resources 4(1): 57-67.
34. Marjani, A. 1995. Evaluation of phenotypic and genotypic traits beans and their correlation with performance through path analysis studies. Master's Thesis. Islamic Azad University.
35. Martins, A.L., Batagha, O.C., Camargo, O.A., and Contavell, H. 2003.Corn yield and uptake of Cu, Fe, Mn and Zn from sewage sludge-amend soil with and without liming. Revista-Basilica-Deciencia 27: 563-574.
36. Masoumi, H., Darvish, F., Daneshian, J., Normohamadi, G., and Habibi, D. 2011. Effect of water deficit stress on seed yield and antioxidants content in soybean cultivars. Agricultural Research journal 6(5): 1209-1218.
37. Mendham, N.J., Shipway, P.A., and Scot, R.K. 1981. The effect of delayed and weather on growth, development and yield of winter oil seed (Brassica napus L.). Agricultural Science Journal 96: 389-416.
38. Mohamadi, A., Bihamta, M., and Dorri, H. 2010. Traits affecting cooking and protein content at 15 genotypes red beans in normal irrigation and drought stress. Iranian Journal of Pulses Research 1(2): 143-152.
39. Monuze-Perea, C.G., Teran, Allen, R.G., Wright, J.I., Westermann, D.T., and Singh, S.P. 2006. Selection for drought resistance in dry bean landraces and cultivars. Crop Science 46: 2111-2120.
40. Mora, V., Bacaicoa, E., Zamarreno, A.M., Aguirre, E., Garnica, M., and Fuentes, M. 2010. Action of humic acid on promotion of cucumber shoot growth involves nitrate-related changes associated with the root-to-shoot distribution of cytokines, polyamines and mineral nutrients. Plant Physiology 167: 633-642.
41. Nami, F., Shakiba, M., Mohamadi, A., and Ghanepour, S. 2011. Yield and yield components bean under effect of water shortages process. The 4th Iranian Pulse Crop Symposium, Febrivery 6-8, 2012. Arak. p. 49. (In Persian).
42. Nasri, M., KHalatbari, M., Zahedi, H., Paknezhad, F., and Tohidi Moghadam, H.R. 2008. Evaluation of micro and macro elements in drought stress condition in cultivars of rapeseed (Brassica napus L.). Amrican Journal of Agricultural and Biollogical Science 3: 579-583.
43. Nilscn, D.C., and Nelson, N.O. 1998. Black been sensitivity to water stress at various growth stage. Crop Science 38: 422-427.
44. Parsa, M.A., and Bagheri, R. 2008. Pulses. Jahad Daneshgahi (Mashhad) Publishers.
45. Pourmousavi, M. 2006. Effect of manure on growth and physiological characteristics of soybean crops in drought condition. MSc. Thesis, University of Zabol. (In Persian with English Summary).
46. Rahi, A., Davodifard, M., Azizi, F., and Habibi, D. 2011. The effect of different doses of humic acid and study the response Dactylis glomerata Cultivar. Journan of Crop Science 28: 15-28.
47. Ritchie, S.W., Nyngen, H.I., and Halady, A.S. 1990. Leaf water content and gas exchange parameters of two wheat genotypes differing in drought resistance. Crop Science 30: 105-111.
48. Sabzevari, S., Khazaei, H.R., and Kafi, M. 2008. Effect of humic acid on root and shoot growth of two wheat cultivars. Journal of Water and Soil 23: 287-94 (In Persian).
49. Sadeghipour, O., and Aghaei, P. 2012. Response of common bean to exogenous application of salicylic acid under water stress condition. Advances in Environmental Biology 6(3): 1160-1168.
50. Salehpoure, M., Ebadi, A., Izadi, M., and Jammati, S. 2009. Evaluation of water stress and nitrogen fertilizer effects on relative water content membrance stability index chlorophyll and some other traits of lentis under hydroponics condition. Research Journal of Environmental Science 3: 103-109.
51. SAS Institute. 1999. SAS Start Users Giulde. Version 8.0.SAS Institute, Cary, NC.
52. Sebahattin, A., and Necdet, C. 2005. Effects of different levels and application times of humic acid on root and leafyield and yield components of forage Turnip (Brassica rapa L.). Agronomy Journal 4: 130-133.
53. Sharif, M., Khattak, R.A., and Sarir, M.S. 2002. Effect of different levels of lignite cool derived humic acid on growth of maize plants. Communications in Soil Science and Plant Analysis 33: 3567-3580.
54. Shekari, F. 2001. Evaluation of common bean characters to drought stress tolerance. Final Report of Research Project of Institute of Agricultural Physiology nd Biotechnology of Zanjan University.
55. Sing, S.P. 1995. Selection for water stress tolerance in interracial in common bean. Crop Sciences 35: 118-124.
56. Szilagiy, L. 2003. Influence of drought on seed yield components in common bean. Bulgarian Journal of Plant Physiology, Special Issue 320-330.
57. Thalooth, A.T., Tawfic, M.M., and Magda Mohamad, H. 2006. Comparative study on the effect of foliar application of zinc, potassium and magnesium on growth, yield and some chemical constituents of mung bean plants grown under water stress condition. World Journal of Agricultural Sciences 2: 37-46.
58. Ulykan, H. 2008. Effect of soil applied humic acid at differ rent sowing times on some yield components in wheat hybrids. International Journal of Botany 4: 164-175.
59. Yelderim, E. 2007. Foliar and soil fertilization of humic acid effect productivity and quality of tomato. Acta Agriculture Scandinavia Section B-soil. Plant Science 57: 182-186.
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