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Deficit irrigation effects on yield and yield components of grain sorghum

机译:缺陷灌溉对谷物高粱产量和产量组分的缺陷灌溉作用

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Development of sustainable and efficient irrigation strategies is a priority for producers faced with water shortages. A promising management strategy for improving water use efficiency (WUE) is managed deficit irrigation (MDI), which attempts to optimize yield and WUE by synchronizing crop water use with the crops reproductive stages. In comparison, deficit irrigation (DI) is applied at a fraction of the full (FI) irrigation requirement. Soil water use and grain yield of grain sorghum [Sorghum bicolor (L.) Moench] were evaluated in the High Plains of Texas, USA under three irrigation strategies: FI, DI, and MDI from 2010 to 2012. Grain yields of FI sorghum averaged 3.7 Mg ha(-1) greater (p & 0.001) than DI sorghum in all years. However, MDI yields averaged 1.6 Mg ha(-1) more than DI yields, which was significant in 2010 and 2012 (p &= 0.006). The WUE of FI sorghum was significantly greater than MDI in 2012 (p = 0.003) and DI in 2010 and 2012 (p &= 0.001) demonstrating that limiting water did not reduce WUE in two of the three years. Results suggest that WUEs of grain sorghum are not compromised under MDI compared with FI in most cropping seasons. While FI provides the greatest opportunity to reduce production risks through increased yield, if irrigation water is limiting, MDI provides less risk than DI due to its ability to maintain yield and WUE. Yield was stabilized in all years by increasing seed panicle(-1) under MDI, which was supportive of concentrating irrigation water between growing point differentiation and half bloom to maintain ovules.
机译:可持续高效灌溉策略的发展是生产者面临水资源短缺的生产者的优先事项。提高用水效率(WUE)的有希望的管理策略是管理赤字灌溉(MDI),该灌溉(MDI)试图通过将作物用水与作物生殖阶段同步,优化产量和WUE。相比之下,缺陷灌溉(DI)应用于完整(FI)灌溉要求的一小部分。在2010年至2012年的三种灌溉策略下,在美国德克萨斯州德克萨斯高原评价土壤用水和谷物籽粒产量[高粱双子(L.)烟道],2010年至2012年的培训策略:FI,DI和MDI。FI高粱的谷物产量平均3.7 mg ha(-1)大(p& 0.001),而不是Di高粱。然而,MDI产量超过了1.6mg HA(-1),超过DI产量,在2010年和2012年是显着的(P& = 0.006)。 2012年2012年的MDI(P = 0.003)和2010年和2012年的DI(P& = 0.001)的WUE明显大于MDI,证明限制水在三年中的两年中没有减少武力。结果表明,与大多数种植季节相比,MDI的谷物高粱的遗迹并未受到影响。虽然在灌溉用水限制的情况下,如果灌溉用水限制,但由于其维持产量和WUE的能力,MDI提供了最大的机会降低产量的最大机会。通过增加MDI下的种子穗(-1),在MDI下稳定产量,这是在生长点分化和半绽放之间浓缩灌溉水来保持胚珠。

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