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Variations in the sensitivity of US maize yield to extreme temperatures by region and growth phase

机译:美国玉米产量对极端温度的敏感性(按地区和生长期划分)

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Maize yield is sensitive to high temperatures, and most large scale analyses have used a single, fixed sensitivity to represent this vulnerability over the course of a growing season. Field scale studies, in contrast, highlight how temperature sensitivity varies over the course of development. Here we couple United States Department of Agriculture yield and development data from 1981–2012 with weather station data to resolve temperature sensitivity according to both region and growth interval. On average, temperature sensitivity peaks during silking and grain filling, but there are major regional variations. In Northern states grain filling phases are shorter when temperatures are higher, whereas Southern states show little yield sensitivity and have longer grain filling phases during hotter seasons. This pattern of grain filling sensitivity and duration accords with the whole-season temperature sensitivity in US maize identified in recent studies. Further exploration of grain filling duration and its response to high temperatures may be useful in determining the degree to which maize agriculture can be adapted to a hotter climate.
机译:玉米产量对高温敏感,大多数大规模分析都使用单一的固定灵敏度来表示整个生长季节中的这种脆弱性。相反,现场规模研究突出了温度敏感性在开发过程中的变化。在这里,我们将1981-2012年美国农业部的产量和发展数据与气象站数据结合起来,以根据区域和增长间隔来解析温度敏感性。平均而言,温度敏感性在蚕丝和灌浆过程中达到峰值,但区域差异很大。在北部各州,温度升高时,籽粒灌浆期较短,而南部各州则表现出较低的单产敏感性,在较热的季节中籽粒灌浆期较长。谷物灌浆敏感性和持续时间的这种模式与最近研究中确定的美国玉米的全季节温度敏感性一致。进一步探究谷物灌浆持续时间及其对高温的响应可能有助于确定玉米农业可适应较热气候的程度。

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