Changes in extreme temperatures and their impacts on rice yields in southern China from 1981 to 2009
文献类型:SCI/SSCI论文
作者 | Zhang S.; Tao, F. L.; Zhang, Z.; Zhu, XC; Shao, MA |
发表日期 | 2016 |
关键词 | Adaptation Agriculture Climate change Crop Extreme climate Impacts climate-change spikelet sterility heat-stress crop yields water-use vulnerability responses period co2 |
英文摘要 | Extreme temperature impacts on field crop are of key concern and increasingly assessed, however the studies have seldom taken into account the automatic adaptations such as shifts in planting dates, phenological dynamics and cultivars. In this present study, trial data on rice phenology, agro-meteorological hazards and yields during 1981-2009 at 120 national agro-meteorological experiment stations were used. The detailed data provide us a unique opportunity to quantify extreme temperature impacts on rice yield more precisely and in a setting with automatic adaptations. In this study, changes in an accumulated thermal index (growing degree day, GDD), a high temperature stress index (>35 degrees C high temperature degree day, HDD), and a cold stress index (<20 degrees C cold degree day, CDD), were firstly investigated. Then, their impacts on rice yield were further quantified by a multivariable analysis. The results showed that in the past three decades, for early rice, late rice and single rice in western part, and single rice in other parts of the middle and lower reaches of Yangtze River, respectively, rice yield increased by 5.83%, 1.71%, 8.73% and 3.49% due to increase in GDD. Rice yield was generally more sensitive to high temperature stress than to cold temperature stress. It decreased by 0.14%, 0.32%, 0.34% and 0.14% due to increase in HDD, by contrast increased by 1.61%, 0.26%, 0.16% and 0.01% due to decrease in CDD, respectively. In addition, decreases in solar radiation reduced rice yield by 0.96%, 0.13%, 9.34% and 6.02%. In the past three decades, the positive impacts of increase in GDD and the negative impacts of decrease in solar radiation played dominant roles in determining overall climate impacts on yield. However, with climate warming in future, the positive impacts of increase in GDD and decrease in CDD will be offset by increase in HDD, resulting in overall negative climate impacts on yield. Our findings highlight the risk of heat stress on rice yield and the importance of developing integrated adaptation strategies to cope with heat stress. (C) 2016 Elsevier B.V. All rights reserved. |
出处 | Field Crops Research |
卷 | 189 |
页 | 43-50 |
收录类别 | SCI |
语种 | 英语 |
ISSN号 | 0378-4290 |
源URL | [http://ir.igsnrr.ac.cn/handle/311030/43907] |
专题 | 生态系统网络观测与模拟院重点实验室_生态网络实验室 |
推荐引用方式 GB/T 7714 | Zhang S.,Tao, F. L.,Zhang, Z.,et al. Changes in extreme temperatures and their impacts on rice yields in southern China from 1981 to 2009. 2016. |
入库方式: OAI收割
来源:地理科学与资源研究所
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