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自 1970 年以来,中国的农作物病虫害发生面积大幅增加。

Occurrence of crop pests and diseases has largely increased in China since 1970.

机构信息

Sino-French Institute for Earth System Science, College of Urban and Environmental Sciences, Peking University, Beijing, China.

Department of Bioproducts and Biosystems Engineering, University of Minnesota-Twin Cities, Minnesota-Twin, MN, USA.

出版信息

Nat Food. 2022 Jan;3(1):57-65. doi: 10.1038/s43016-021-00428-0. Epub 2021 Dec 9.

Abstract

Crop pests and diseases (CPDs) are emerging threats to global food security, but trends in the occurrence of pests and diseases remain largely unknown due to the lack of observations for major crop producers. Here, on the basis of a unique historical dataset with more than 5,500 statistical records, we found an increased occurrence of CPDs in every province of China, with the national average rate of CPD occurrence increasing by a factor of four (from 53% to 218%) during 1970-2016. Historical climate change is responsible for more than one-fifth of the observed increment of CPD occurrence (22% ± 17%), ranging from 2% to 79% in different provinces. Among the climatic factors considered, warmer nighttime temperatures contribute most to the increasing occurrence of CPDs (11% ± 9%). Projections of future CPDs show that at the end of this century, climate change will lead to an increase in CPD occurrence by 243% ± 110% under a low-emissions scenario (SSP126) and 460% ± 213% under a high-emissions scenario (SSP585), with the magnitude largely dependent on the impacts of warmer nighttime temperatures and decreasing frost days. This observation-based evidence highlights the urgent need to accurately account for the increasing risk of CPDs in mitigating the impacts of climate change on food production.

摘要

作物病虫害是全球粮食安全面临的新威胁,但由于主要作物产区缺乏观测数据,病虫害发生趋势在很大程度上仍不清楚。在这里,基于一个拥有超过 5500 个统计记录的独特历史数据集,我们发现中国每个省份的病虫害发生频率都有所增加,1970 年至 2016 年期间,全国病虫害发生频率的平均值增加了四倍(从 53%增加到 218%)。历史气候变化是病虫害发生频率观测增量的五分之一以上(22%±17%)的主要原因,不同省份的增幅从 2%到 79%不等。在所考虑的气候因素中,夜间温度升高对病虫害发生频率的增加贡献最大(11%±9%)。对未来病虫害的预测表明,本世纪末,在低排放情景(SSP126)下,气候变化将导致病虫害发生频率增加 243%±110%,在高排放情景(SSP585)下增加 460%±213%,其幅度在很大程度上取决于夜间温度升高和无霜期减少的影响。这种基于观测的证据强调了在缓解气候变化对粮食生产的影响方面,准确考虑病虫害增加风险的迫切需要。

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