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Neglecting Rice Milling Yield and Quality Underestimates Economic Losses from High-Temperature Stress

机译:忽视碾米的产量和质量低估了高温胁迫造成的经济损失

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摘要

Future increases in global surface temperature threaten those worldwide who depend on rice production for their livelihoods and food security. Past analyses of high-temperature stress on rice production have focused on paddy yield and have failed to account for the detrimental impact of high temperatures on milling quality outcomes, which ultimately determine edible (marketable) rice yield and market value. Using genotype specific rice yield and milling quality data on six common rice varieties from Arkansas, USA, combined with on-site, half-hourly and daily temperature observations, we show a nonlinear effect of high-temperature stress exposure on yield and milling quality. A 1°C increase in average growing season temperature reduces paddy yield by 6.2%, total milled rice yield by 7.1% to 8.0%, head rice yield by 9.0% to 13.8%, and total milling revenue by 8.1% to 11.0%, across genotypes. Our results indicate that failure to account for changes in milling quality leads to understatement of the impacts of high temperatures on rice production outcomes. These dramatic losses result from reduced paddy yield and increased percentages of chalky and broken kernels, which together decrease the quantity and market value of milled rice. Recently published estimates show paddy yield reductions of up to 10% across the major rice-producing regions of South and Southeast Asia due to rising temperatures. The results of our study suggest that the often-cited 10% figure underestimates the economic implications of climate change for rice producers, thus potentially threatening future food security for global rice producers and consumers.
机译:未来全球地表温度的上升威胁着全世界依靠稻米生产为生和粮食安全的人们。过去对稻米生产造成的高温胁迫的分析都集中在水稻产量上,未能说明高温对制粉质量结果的不利影响,而最终决定了可食用(可销售)稻米的产量和市场价值。利用来自美国阿肯色州的六个常见水稻品种的基因型特定水稻产量和制粉质量数据,结合现场,半小时和每日温度观测,我们显示了高温胁迫暴露对产量和制粉质量的非线性影响。平均生长期温度每升高1°C,稻谷产量降低6.2%,精米总产量降低7.1%至8.0%,糙米总产量降低9.0%至13.8%,而制粉总收入降低8.1%至11.0%基因型。我们的结果表明,无法解释制粉质量的变化会导致人们对高温对水稻生产成果的影响的估计不足。这些显着的损失是由于稻谷产量下降以及白垩和破损谷粒的百分比增加,共同降低了精米的数量和市场价值。最近公布的估计数字显示,由于气温上升,南亚和东南亚主要稻米生产地区的稻谷减产高达10%。我们的研究结果表明,经常被引用的10%这一数字低估了气候变化对稻米生产者的经济影响,因此有可能威胁到全球稻米生产者和消费者的未来粮食安全。

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