环境科学
臭氧
接头(建筑物)
产量(工程)
污染
小麦粒
气候变化
粮食产量
农学
大气科学
气象学
生态学
地理
生物
工程类
地质学
材料科学
建筑工程
冶金
作者
Yansen Xu,J. J. Tang,Jiaxuan Xia,Yanze Ma,Bo Shang,Bing Liu,Kazuhiko Kobayashi,Zhaozhong Feng,Evgenios Agathokleous
摘要
ABSTRACT Ozone (O 3 ) pollution and climate warming jointly threaten crop productivity and undermine global food security. However, their combined effects on wheat under real‐world conditions are not well understood, limiting the potential for adaptation. Here, we investigated yield and grain protein of a major wheat variety under joint elevated O 3 and warming manipulations in 3 years (2021–2023), using a real‐world simulation with a free‐air controlled enrichment (FACE) facility. We found that O 3 pollution reduced grain yield mainly by limiting a carbon source via accelerated flag leaf senescence and declined leaf area index. Warming enhanced nitrogen uptake before heading and thereby mitigated leaf senescence and increased grain protein content. This wheat variety showed lower responses to independent elevated O 3 and warming than the varieties studied in the literature. Cultivating this tolerant wheat variety resulted in only 6% yield losses under joint O 3 pollution and warming, while increasing grain nitrogen content by 9%. These findings demonstrate that it is critical to breed wheat varieties that optimize high yield in tandem with adaptation to air pollution and climate change.
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