تأثیر محلولپاشی آهن و روی در مراحل مختلف رشد بر عملکرد، اجزای عملکرد و کیفیت دانه ذرت شیرین
محورهای موضوعی :
اکوفیزیولوژی گیاهان زراعی
افسانه یوسف پور
1
,
الناز فرج زاده معماری تبریزی
2
1 - استادیار دانشکده کشاورزی، واحد تبریز، دانشگاه آزاد اسلامی، تبریز، ایران.
2 - استادیار گروه زراعت، واحد ملکان، دانشگاه آزاد اسلامی، ملکان، ایران.
تاریخ دریافت : 1396/08/19
تاریخ پذیرش : 1397/06/07
تاریخ انتشار : 1397/06/01
کلید واژه:
عملکرد,
ذرت شیرین,
محلولپاشی,
عناصر غذایی کممصرف,
چکیده مقاله :
این مطالعه جهت بررسی تأثیر کاربرد عناصر غذایی کممصرف آهن و روی (به تنهایی و توأم به صورت محلولپاشی با غلظت 5/2 و 5 در هزار و یا مصرف خاکی به مقدار 15 و 30 کیلوگرم در هکتار) و زمان کاربرد کودها (شـاهد، مصـرف خاکی کودها، محـلولپاشی در مرحله رشـد رویشی، محلولپاشی در مرحله ظهور گل آذین نر، محلولپاشی در دو مرحله رشد رویشی و ظهور گل آذین نر، محلولپاشی در مرحله پر شدن دانه و محلولپاشی در سه مرحله رشد رویشی، ظهور گل آذین نر و پر شدن دانه) بر رشد و عملکرد ذرت (Zea mays convar saccharata var. rugosa) انجام شد. آزمایش در سال 1395 در دانشگاه آزاد اسلامی واحد تبریز به صورت اسپلیت پلات در قالب طرح بلوکهای کامل تصادفی در سه تکرار اجرا شد. با توجه به نتایج این بررسی تیمارهای کودی اثر مشابهی از نظر آماری بر عملکرد خشک داشتند. هر چهار تیمار مصرف خاکی کودها، محلولپاشی در مرحله رشد رویشی، محلولپاشی در دو مرحله رشد رویشی و ظهور گل آذین نر و محلولپاشی در سه مرحله رشد رویشی، ظهور گل آذین نر و پر شدن دانه افزایش معنی دار و مشابهی را از نظر آماری در این صفت باعث شده و عملکرد دانه خشک را به ترتیب 20، 12، 21 و 22 درصد افزایش دادند که تنها ناشی از افزایش تعداد دانه تولیدی بود. با توجه به نتایج این بررسی، تنها در دو تیمار کاربرد خاکی 5 کیلوگرم در هکتار آهن و محلولپاشی آهن و روی در دو مرحله رویشی و آغاز مرحله زایشی با غلظت 5 در هزار افزایش سود مطلوبی به ترتیب با 334850 و 271298 هزار تومان اضافه درآمد خالص در هکتار داشتند.
چکیده انگلیسی:
This study aimed to investigate the impact of micro fertilizer application (Iron and zinc alone or together as foliar application in 2.5 and 5 per thousand concentration or soil application in 15 or 30 kg.ha-1) and the fertilizers application time (control, soil application of fertilizers, spraying at vegetative growth stage, spraying in tassel stage, spraying in two phases of growth and tasseling stage, spraying in grain filling stage and spraying in three stages of growth, tasseling and grain filling) on growth and yield of maize (Zea mays convar. saccharata var. rugosa). The experiment was conducted in Islamic Azad University, Tabriz Branch during 2016 growing season as split plot using a randomized complete block design with three replications. According to the results of the study fertilizer treatments had statistically similar effects on seed of dry yield. All four treatments, soil application of fertilizers, spraying at vegetative growth stage, spraying at two stages of vegetative stage and tasseling and spraying at three stages of vegetative stage, tasseling and grain filling increased this trait similarly and increased seed dry yield by 20, 12, 21 and 22 percent which could be only due to increasing number of seeds produced. According to the survey results in just two treatments, soil application of 5 kg.ha-1 iron and foliar application of iron and zinc in the vegetative and early reproductive stage at a concentration of 5 per thousand, an increase of optimal gains, respectively 334850 and 271298 tomans net income per hectare, obtained.
منابع و مأخذ:
· Aduloju, M.O., and T.O.Abdulmalik. 2013. Effect of zinc and N-P-K application on phosphorus and zinc uptake by maize (Zea mays L.) on an alfisol. Global Science Research Journals. 2 (4): 496-499.
· Afshar, I., A. Rahimi Haghighi, and M. Shirazi. 2014. Comparison the effects of spraying different amounts of nano zincoxide and zinc oxide on, wheat. International Journal of Plant, Animal and Environmental Sciences. 4: 633-641.
· Battal, P., and B. Tüleklüoúlu. 2001. The Effects of different mineral nutrients on the levels of cytokininsinmaize(Zea maysL.). Turkish Journal of Botany. 25:123-130.
· Ehsanullah, F., A. Tariq, M.A. Randhawa, S.A. Anjum, and M. Nadeem. 2015. Exploring the role of zinc in maize (Zea Mays L.) through soil and foliar application. Universal Journal of Agricultural Research. 3(3): 69-75.
· Fageria, N.K., M.P. Barbosa Filho, A. Moreira, and C. M. Guimaraes. 2009. Foliar fertilization of crop plants. Journal of Plant Nutrition. 32: 1044–1064.
· Felekari, H., M. Eghbal Ghobadi, M. Ghobadi, S. Jalali Honarmand, and M. Saeidi. 2014. The effect of post anthesis source and sink limitation in wheat cultivars under moderate condition. International Journal of Biosciences. 5: 52-59.
· Genc, Y., C.Y. Huang, and P. Langridge. 2007. A study of the role of root morphological traits in growth of barley in zinc-deficient soil. Journal of Experimental Botany. 58: 2775–2784.
· Ghazvineh, S., and M. Yousefi. 2012. Study the effect of micronutrient application on yield and yield components of maize. American-Eurasian Journal of Agriculture and Environment Science. 12 (2): 144-147.
· Głowacka, A. 2013. Uptake of Cu, Zn, Fe and Mn by maize in the strip cropping system. Plant Soil Environment. 59: 322-328.
· Grezebisz, W., M. Wronska, J. B. Diatta, and P. Dullin. 2008. Effect of zinc foliar application at an early stage of maize growth on patterns of nutrients and dry matter accumulation by the canopy. Journal of Elementol. 13:17-28.
· Heidarian, A.R., H. Kord, K. Mostafavi, A. Parviz Lak, and F. Amini Mashhadi. 2011. Investigating Fe and Zn foliar application on yield and its components of soybean (Glycine max (L) Merr.) at different growth stages. Journal of Agricultural Biotechnology and Sustainable Development. 3(9):189 -197.
· Irmak, S., A. Nuran Çıl, H. Yücel, and Z. Kaya. 2012. The effects of iron application to soil and foliarly on agronomic properties and yield of peanut (Arachis hypogaea). Journal of Food, Agriculture and Environment. 10(3and4): 417 - 422.
· Jamshidzadeh, M.A., H. Reza Mobasser, and H. Reza Ganjali. 2014. Effect of times and foliar concentration of iron on grain yield, diameter of cob, plant height and dry weight of corn. International Journal of Biosciences. 5: 139-143.
· Keram, K.S., B.L. Sharma, and S.D. Sawarkar. 2012. Impact of Zn application on yield, quality, and nutrients uptake and soil fertility in a medium deep black soil (vertisol).InternationalJournalofScience,EnvironmentandTechnology.1:563-571.
· Kow, N., and J. Nabwami. 2015. A review of effects of nutrient elements on crop quality. African Journal of Food, Agriculture, Nutrition and Development. 15: 9776-9781.
· Moghadam, H.R.T., H. Zahedi, and A. Ashkiani. 2013. Effect of zinc foliar application on auxin and gibberellin hormones and catalase and superoxide dismutase enzyme activity of corn (Zea mays L.) under water stress. Maydica. 58: 218-223.
· Mollasadeghi, V., S. Elyasi, and B. Mirzamasoumzadeh. 2015. Role of and reason for deficiency of Iron in maize. Research Journal of Fisheries and Hydrobiology. 10(11): 11-14.
· Mosanna, R., and E. Khalilvand Behrozyar. 2015. Morpho- physiological response of maize (Zea mays L.) to zinc nano-chelate foliar and soil application at different growth stages. Journal on New Biological Reports. 4(1): 46 – 50.
· Mosavi feyzabadi, S.H., F. Vazin, and M. Hassanzadeh delouei. 2013. Effects of nitrogen and zinc spray on yield of corn (Zea Mays L.) in drought stress. Cercetări Agronomice în Moldova. 3(155): 29-38.
· Narimani, H., M. Mehdi Rahimi, A. Ahmadikhah, and B. Vaezi. 2010. Study on the effects of foliar spray of micronutrient on yield and yield components of durum wheat. Archives of Applied Science Research. 2(6):168-176.
· Nasiri, Y., and N. Najafi. 2015. Effects of soil and foliar applications of iron and zinc on flowering and essential oil of chamomile at greenhouse conditions. Acta Agriculturae Slovenica. 105: 33 - 41.
· Nawaz, M., N. Iqbal, M. Usman Saleem, and M. Muhammad Ashraf. 2015. Effect of ZnSO4 mixed with different fertilizers on paddy yield of fine grain rice. Applied Sciences and Business Economics. 2: 8-17.
· Potarzycki, J., and W. Grzebisz. 2009. Effect of zinc foliar application on grain yield of maize and its yielding components. Plant Soil Environment. 55(12): 519–527.
· Razzaq, M.R., F. Muhammad Anjum, and M. Issa Khan. 2012. Effect of extruder variables on chemical characteristics of maize (Zea mays L.) extrudates. Pakistan Journal of Food Sciences. 22(2):108-116.
· Safyan, N., M. Reza Naderi darbaghshahi, and B. Bahari. 2012. The effect of microelements spraying on growth, qualitative and quantitative grain corn in Iran. International Research Journal of Applied and Basic Sciences. 3: 2780-2784.
· Sajjadi Khasragi, Y., and M. Yarnia. 2014. Effect of zinc sulfate application in different growth stages on yield and yield components of sweet corn (Var. Chalenger). International Journal of Biosciences. 5: 258-265.
· Stravinskiene, V., and M. Racaite. 2014. Impact of cadmium and zinc on the growth of winter clower (Trifolium repens L.) shoots and Roots. Polish Journal of Environmental Studies. 23: 1355-1359.
· Taheri Oshtryani., F., and A. Fathi.2016. Effect of mycorrhiza and phosphorus with salicylic acid on some of the corn traits. Journal of Crop Ecophysiology. 3(39): 657-668.(In Persian).
· Tariq, M., M. Sharif, Z. Shah, and R. Khan. 2007. Effect of foliar application of micronutrients on the yield and quality of sweet orange (Citrus sinensis L.). Pakistan Journal of Biological Science. 10(11): 1823- 1828.
Zare, K., F. Vazin, and M. Hassanzadeh delouei. 2013. Effects of potassium and iron on yield of corn (Zea mays L.) in drought stress. Cercetări Agronomice în Moldova. 8: 45-57.
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