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首页> 外文期刊>American journal of agricultural and biological sciences >Response of Maize to Nutrients Foliar Application Under Water Deficit Stress Conditions
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Response of Maize to Nutrients Foliar Application Under Water Deficit Stress Conditions

机译:缺水胁迫条件下玉米对施用营养叶的响应

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Problem statement: To investigate the effect of nutrient application on agronomical characteristic and water use efficiency under water deficit stress of hybrid maize 704, an experiment was arranged in a split plot factorial based on a complete randomized block design with four replicates in the research station of Islamic Azad University-Arak Branch, Iran in 2007. Approach: Main factors studied were four irrigation levels including irrigation equal to crop water requirement, water deficit stress ateight- leaf stage (V8), stage of blister (R2) and stage of filling grain in the main plot. Combined levels of selenium treatment (without and with application 20 g ha"1) were applied 2 weeks before execution of water stress treatment and micronutrients (without and with application) that was provided by specific fertilizer for maize called "Biomin", which contained Fe, Zn, Cu, Mn, B, Mo and Mg in the form of foliar application at six-leaf stage and 1 week before tasseling stage at the rate of 2 L ha"1 were situated in sub plots. Results: Results indicated that effect of water deficit stress on 1000 grain weight, grain yield, harvest index and water use efficiency at different growth stages was significant at 1% level. Water deficit stress decreased grain yield 33% in grain filling stage as compared with control. Using selenium increased mentioned traits but the increase was non significant. Effects of twofold interactions of water deficit stress and selenium showed that using selenium in water deficitstress condition increased measured traits as compared with treatment without selenium. A negative antagonistic interaction was found between selenium and micronutrients on some measured traits. In between treatments of water deficit stress, highest grain yield (8159.33 kg ha~(-1)) was obtained from combined treatment of water deficit stress at eight-leaf stage with selenium application and without micronutrients which compared with treatment of irrigation equal to crop water requirement, without selenium and microelements did not differ significant. Conclusion: According to the results of experiment, using microelements in optimum water availability and using selenium in water deficit stress condition increased mentioned traits as compared to treatments control.
机译:问题陈述:为了研究养分施用对杂交玉米704缺水胁迫下农艺性状和水分利用效率的影响,在完整的随机区组设计基础上,在4个重复样点的分裂地块因子分解试验中安排了一个实验。伊朗伊斯兰阿扎德大学-阿拉克分校,2007年。方法:研究的主要因素是四个灌溉水平,其中包括等于作物需水的灌溉水平,缺水胁迫的八叶期(V8),水泡期(R2)和灌浆期。在主图中。在进行水分胁迫处理前2周施用硒水平的综合处理量(不施用20 g ha“ 1)和由玉米专用肥料“ Biomin”提供的微量营养素(不施用)在亚片区以6 L叶期和去雄期前1周以2 L ha-1的速率叶面施用锌,Cu,Mn,B,Mo和Mg。结果:结果表明,水分亏缺胁迫对不同生育期的1000粒重,籽粒产量,收获指数和水分利用效率的影响在1%水平上是显着的。与对照相比,水分亏缺胁迫使灌浆期的籽粒产量降低了33%。使用硒增加了上述特征,但增加并不显着。缺水胁迫和硒的双重相互作用的影响表明,与缺硒处理相比,在缺水胁迫条件下使用硒提高了实测性状。硒与微量营养素之间在某些测量的性状上存在负的拮抗作用。在缺水胁迫的处理之间,与不施农作物的灌溉处理相比,在八叶期施硒和不添加微量营养素的情况下,对缺水胁迫进行联合处理可获得最高的谷物产量(8159.33 kg ha〜(-1))。没有硒和微量元素的水需求没有显着差异。结论:根据实验结果,与微量元素处理相比,在最佳水分供应条件下使用微量元素和在缺水胁迫条件下使用硒能增加上述特征。

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