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Large-scale characterization of drought pattern: a continent-wide modelling approach applied to the Australian wheatbelt – spatial and temporal trends

机译:干旱模式的大规模表征:一种适用于澳大利亚小麦带的大洲建模方法–时空趋势

摘要

* Plant response to drought is complex, so that traits adapted to a specific drought type can confer disadvantage in another drought type. Understanding which type(s) of drought to target is of prime importance for crop improvement. * Modelling was used to quantify seasonal drought patterns for a check variety across the Australian wheatbelt, using 123 yr of weather data for representative locations and managements. Two other genotypes were used to simulate the impact of maturity on drought pattern. * Four major environment types summarized the variability in drought pattern over time and space. Severe stress beginning before flowering was common (44% of occurrences), with (24%) or without (20%) relief during grain filling. High variability occurred from year to year, differing with geographical region. With few exceptions, all four environment types occurred in most seasons, for each location, management system and genotype. * Applications of such environment characterization are proposed to assist breeding and research to focus on germplasm, traits and genes of interest for target environments. The method was applied at a continental scale to highly variable environments and could be extended to other crops, to other drought-prone regions around the world, and to quantify potential changes in drought patterns under future climates.
机译:*植物对干旱的反应非常复杂,因此适应特定干旱类型的性状可能给另一种干旱带来不利影响。理解针对哪种干旱类型对作物改良至关重要。 *使用123年的代表性地点和管理气象数据,通过建模来量化整个澳大利亚小麦带检查品种的季节性干旱模式。使用其他两个基因型来模拟成熟度对干旱模式的影响。 *四种主要的环境类型总结了干旱模式随时间和空间的变化。开花前开始出现的严重压力很普遍(发生次数的44%),在灌浆过程中缓解(24%)或没有缓解(20%)。每年发生的高变异性,随地理区域的不同而不同。除少数例外,所有位置,管理系统和基因型的四种环境类型都发生在大多数季节。 *提出了这种环境表征的应用,以协助育种和研究,以关注目标环境的种质,性状和感兴趣的基因为重点。该方法已在大陆范围内应用于高度变化的环境,并且可以扩展到其他农作物,世界上其他容易干旱的地区,并量化未来气候下干旱模式的潜在变化。

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