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Ensemble yield simulations: Using heat-tolerant and later-maturing varieties to adapt to climate warming

机译:整体产量模拟:使用耐热和晚熟品种适应气候变暖

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摘要

The use of modern crop varieties is a dominant method of obtaining high yields in crop production. Efforts to identify suitable varieties, with characteristics that would increase crop yield under future climate conditions, remain essential to developing sustainable agriculture and food security. This work aims to evaluate potential genotypic adaptations (i.e., using varieties with increased ability to produce desirable grain numbers under high temperatures and with enhanced thermal time requirements during the grain-filling period) to cope with the negative impacts of climate change on maize yield. The contributions of different options were investigated at six sites in the North China Plain using the APSIM model and the outputs of 8 GCMs under RCP4.5 scenarios. It was found that without considering adaptation options, mean maize yield would decrease by 7~18% during 2010–2039 relative to 1976–2005. A large decrease in grain number relative to stabilized grain weight decreased maize yield under future climate scenarios. Using heat-tolerant varieties, maize yield could increase on average by 6% to 10%. Using later maturing varieties, e.g., enhanced thermal time requirements during the grain-filling period, maize yield could increase by 7% to 10%. The optimal adaptation options were site specific.
机译:现代作物品种的使用是在作物生产中获得高产的主要方法。努力寻找合适的品种,其特征将在未来的气候条件下增加作物的产量,这对于发展可持续农业和粮食安全仍然至关重要。这项工作旨在评估潜在的基因型适应性(即使用具有更高能力的小麦品种,使其在高温下能够产生理想的谷粒数量,并在灌浆期增加热时间要求),以应对气候变化对玉米产量的负面影响。使用APSIM模型和RCP4.5情景下的8个GCM的输出,在华北平原的六个地点调查了不同方案的贡献。研究发现,在不考虑适应方案的情况下,相对于1976-2005年,2010-2039年玉米平均单产将降低7〜18%。在未来气候情景下,相对于稳定的谷物重量而言,谷物数量的大幅减少降低了玉米单产。使用耐热品种,玉米单产平均可提高6%至10%。使用较晚熟的品种,例如在灌浆期增加热时间要求,玉米产量可提高7%至10%。最佳的适应方案是针对特定地点的。

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  • 作者

    Yi Zhang; Yanxia Zhao;

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  • 年(卷),期 -1(12),5
  • 年度 -1
  • 页码 e0176766
  • 总页数 11
  • 原文格式 PDF
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