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气温升高对中国南方水稻产量的负面影响。

The negative impact of increasing temperatures on rice yields in southern China.

机构信息

State Key Laboratory of Severe Weather, Chinese Academy of Meteorological Sciences, 100081 Beijing, China.

State Key Laboratory of Severe Weather, Chinese Academy of Meteorological Sciences, 100081 Beijing, China.

出版信息

Sci Total Environ. 2022 May 10;820:153262. doi: 10.1016/j.scitotenv.2022.153262. Epub 2022 Jan 20.

Abstract

China is the main producer and consumer of rice in the world, and rice is a major staple food grain for more than half of the world's population. Reduced rice yields caused by climate factors not only affect the food security of China, but also has global repercussions. Thus, it is vital to assess the potential impact of climate warming on rice production. Using daily temperature and phenology records of double-cropping rice from agro-meteorological stations in southern China, the influence of increased temperatures on rice yields during the last several decades was investigated. Associated with an increase in average daily mean temperatures by 0.7 °C during 2009-2018 relative to 1961-1970, Killing Degree Days (KDD), an indicator for damaging high temperature, for early and late rice increased by 110% and 88.6% respectively. However, the negative influence of KDDs on yields was mainly evident for early rice, because high temperatures occurred frequently during the sensitive grain-filling period; early-rice yields showed a decrease of 8% per 1 °C increase in mean growing season air temperature. Late rice yields, on the other hand, were not as negatively influenced by increasing temperatures as early rice, because high temperature usually occurred during the vegetative growth stage, which was not so sensitive to high temperature.

摘要

中国是世界上主要的稻米生产国和消费国,稻米是全球一半以上人口的主要主食。气候因素导致的稻米减产不仅影响中国的粮食安全,而且具有全球性影响。因此,评估气候变暖对稻米生产的潜在影响至关重要。本研究利用中国南方农业气象站的双季稻逐日温度和物候记录,调查了过去几十年气温升高对稻米产量的影响。与 1961-1970 年相比,2009-2018 年平均日平均气温升高 0.7°C,导致早稻和晚稻的致死温度天数(KDD)分别增加了 110%和 88.6%。然而,KDD 对产量的负面影响主要在早稻中明显,因为在敏感的灌浆期高温频繁发生;早稻每增加 1°C 生长期平均气温,产量就会下降 8%。另一方面,晚稻产量不像早稻那样受到气温升高的负面影响,因为高温通常发生在营养生长阶段,对高温的敏感性不高。

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