全球变暖
环境科学
粮食安全
气候变化
产量(工程)
作物产量
作物
气候模式
农学
气候学
农业工程
农业
生态学
生物
工程类
地质学
冶金
材料科学
作者
Chuang Zhao,Shilong Piao,Xuhui Wang,Yao Huang,Philippe Ciais,Joshua Elliott,Mengtian Huang,Ivan A. Janssens,Tao Li,Xu Lian,Yongwen Liu,Christoph Müller,Shushi Peng,Tao Wang,Zhenzhong Zeng,Josep Peñuelas
出处
期刊:Nature plants
[Nature Portfolio]
日期:2016-12-19
卷期号:3 (1)
被引量:153
标识
DOI:10.1038/nplants.2016.202
摘要
Rice is the staple food for more than 50% of the world's population1–3. Reliable prediction of changes in rice yield is thus central for maintaining global food security. This is an extraordinary challenge. Here, we compare the sensitivity of rice yield to temperature increase derived from field warming experiments and three modelling approaches: statistical models, local crop models and global gridded crop models. Field warming experiments produce a substantial rice yield loss under warming, with an average temperature sensitivity of −5.2 ± 1.4% K−1. Local crop models give a similar sensitivity (−6.3 ± 0.4% K−1), but statistical and global gridded crop models both suggest less negative impacts of warming on yields (−0.8 ± 0.3% and −2.4 ± 3.7% K−1, respectively). Using data from field warming experiments, we further propose a conditional probability approach to constrain the large range of global gridded crop model results for the future yield changes in response to warming by the end of the century (from −1.3% to −9.3% K−1). The constraint implies a more negative response to warming (−8.3 ± 1.4% K−1) and reduces the spread of the model ensemble by 33%. This yield reduction exceeds that estimated by the International Food Policy Research Institute assessment (−4.2 to −6.4% K−1) (ref. 4). Our study suggests that without CO2 fertilization, effective adaptation and genetic improvement, severe rice yield losses are plausible under intensive climate warming scenarios. To explore how climate warming may affect rice yield, a study used field experiments and three modelling approaches to examine the sensitivity of rice yield to warming. The study predicts that severe rice yield losses are likely to occur without effective crop improvement.
科研通智能强力驱动
Strongly Powered by AbleSci AI