农业
粮食安全
环境科学
物候学
濒危物种
地理
气候变化
中国
作物
气候学
弹簧(装置)
生长季节
农业生产力
中国南方
构造盆地
全球变暖
自然地理学
生长度日
降水
作者
Xiaoyin Liu,Peixin Li,Yifan Shen,Yuping Lv,Linxian Liao,Jia Wei,Junzeng Xu,Xiaoyin Liu,Peixin Li,Yifan Shen,Yuping Lv,Linxian Liao,Jia Wei,Junzeng Xu
标识
DOI:10.1016/j.agwat.2025.109985
摘要
Flash droughts are intensifying under climate change, threatening global food security through their rapid onset and severe impacts on crop production. Yet crop-specific vulnerabilities to agricultural rapid-onset droughts across China’s major grain-producing regions remain poorly understood. Here, we investigated the spatiotemporal variations and seasonal characteristics of agricultural rapid-onset droughts across three major grain-producing regions in southern China: Middle-Lower Reaches of the Yangtze River Basin (MLRYR), Southwest China (SWC), and South China (SC), including frequency, duration, intensity, and development rate by using different root-zone soil moisture datasets. We further examined temporal coupling between agricultural rapid-onset drought onset and critical crop growth stages. Our analysis revealed significant spatial heterogeneity in different characteristics of agricultural rapid-onset droughts. Southern areas of MLRYR exhibited “high-frequency, short-duration, high-rate” characteristics (1.4–2.0 events per year, ∼25 days duration, >12 % per 5-day onset rate), while northern areas showed “low-frequency, long-duration, low-rate” patterns (0–1.4 events per year, 30–35 days duration, 8–10 % per 5-day onset rate). Spring and summer were identified as peak drought seasons with distinct patterns. Spring agricultural rapid-onset droughts exhibited “locally frequent” characteristics, while summer droughts showed “widespread occurrence” patterns. Critical crop-drought coupling risks were identified through phenological alignment analysis. Spring droughts coincided with winter wheat grain-filling periods in MLRYR and early rice nursery management in SC, while summer droughts threatened middle rice during tillering-to-booting transitions in MLRYR and reproductive stages of spring maize in SWC. These findings provide fundamental insights for developing targeted agricultural adaptation strategies to enhance food security with the intensification of flash droughts.
科研通智能强力驱动
Strongly Powered by AbleSci AI