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Seed priming and soil incorporation with silicon influence growth and yield of maize under water-deficit stress

机译:水缺陷应力下硅的种子灌注与土壤掺入玉米生长和产量

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摘要

Silicon (Si) has been known to enhance plant tolerance against biotic and abiotic stresses besides its beneficial effects on plant growth and yield. Two experiments were conducted to evaluate the effect of Si against water-deficit stress in maize (Zea mays) applied through seed priming and soil incorporation methods, and to find out the optimum dose of Si under each method. In the seed priming experiment, seeds were exposed to different Si levels, up to 2 mM l(-1), germinating under three soil moisture regimes (100%, 75% and 50% field capacity-FC). In the soil incorporation study, the treatments included were six Si doses from 0 to 600 kg ha(-1) under the same soil moisture regimes. Grain yield was reduced by 59% and 69% in the seed priming and soil incorporation study, respectively, at 50% FC. Si application was effective irrespective of the application methods with higher cob length, 100-kernel weight and grain yield than the control. Application of Si at 1 mM l(-1) as seed priming and 300 kg ha(-1) as soil incorporation was more effective than other doses and could be recommended as optimum dose for Nakhon Sawan 3 hybrid maize variety under water-deficit stress.
机译:已知硅(Si)在其对植物生长和产量的有益作用之外,增强了植物对生物和非生物胁迫的耐受性。进行了两次实验以评估Si通过种子灌注和土壤掺入方法施加玉米(Zea Mays)中的水缺陷胁迫的影响,并在每种方法下找出最佳剂量的Si。在种子引发实验中,将种子暴露于不同的Si水平,高达2mm L(-1),在三种土壤水分制度下发芽(100%,75%和50%的现场容量-CC)。在土壤掺入研究中,在相同的土壤湿度制度下,包括从0至600千克HA(-1)的六种Si剂量。种子灌注和土壤掺入研究分别在50%Fc下分别降低了谷物产量59%和69%。无论具有较高的COB长度,100粒重量和谷物产量的涂布方法如何,Si应用都是有效的。在1mm L(-1)的施用作为种子引发和300kg ha(-1),因为土壤掺入比其他剂量更有效,并且可以推荐用于水 - 缺陷应力下的Nakhon Sawan 3杂交玉米品种的最佳剂量。

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