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Attribution of yield change for rice-wheat rotation system in China to climate change, cultivars and agronomic management in the past three decades

机译:过去三十年中国稻麦轮作系统产量变化对气候变化,品种和农艺管理的影响

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摘要

Using the detailed field experiment data from 1981 to 2009 at four representative agro-meteorological experiment stations in China, along with the Agricultural Production System Simulator (APSIM) rice-wheat model, we evaluated the impact of sowing/transplanting date on phenology and yield of rice-wheat rotation system (RWRS). We also disentangled the contributions of climate change, modern cultivars, sowing/transplanting density and fertilization management, as well as changes in each climate variables, to yield change in RWRS, in the past three decades. We found that change in sowing/transplanting date did not significantly affect rice and wheat yield in RWRS, although alleviated the negative impact of climate change to some extent. From 1981 to 2009, climate change jointly caused rice and wheat yield change by -17.4 to 1.5 %, of which increase in temperature reduced yield by 0.0-5.8 % and decrease in solar radiation reduced it by 1.5-8.7 %. Cultivars renewal, modern sowing/transplanting density and fertilization management contributed to yield change by 14.4-27.2, -4.7- -0.1 and 2.3-22.2 %, respectively. Our findings highlight that modern cultivars and agronomic management compensated the negative impacts of climate change and played key roles in yield increase in the past three decades.
机译:利用1981年至2009年中国四个代表性农业气象试验站的详细实地试验数据,以及农业生产系统模拟器(APSIM)稻麦模型,我们评估了播种/移栽日期对物候和产量的影响。稻麦轮作系统(RWRS)。在过去的三十年中,我们还分析了气候变化,现代品种,播种/移栽密度和施肥管理以及每种气候变量的变化对RWRS产量变化的贡献。我们发现播种/移栽日期的变化虽然在一定程度上减轻了气候变化的负面影响,但并未显着影响RWRS的水稻和小麦产量。从1981年到2009年,气候变化共同导致稻米和小麦的产量变化-17.4%至1.5%,其中温度升高使产量降低0.0-5.8%,而太阳辐射的降低使水稻和小麦的产量降低1.5-8.7%。品种更新,现代播种/移栽密度和施肥管理分别导致产量变化14.4-27.2%,-4.7--0.1%和2.3-22.2%。我们的发现表明,过去三十年来,现代品种和农艺管理弥补了气候变化的负面影响,并在增产中发挥了关键作用。

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