降级(电信)
环境科学
生物量(生态学)
土壤碳
有机质
土壤有机质
碳纤维
农学
作物
土壤退化
土壤科学
土壤水分
生物
生态学
材料科学
电信
复合数
计算机科学
复合材料
作者
Haowei Ni,Han Hu,Constantin M. Zohner,Weigen Huang,Ji Chen,Yishen Sun,Jixian Ding,Jizhong Zhou,Xiaoyuan Yan,Jiabao Zhang,Yuting Liang,Thomas W. Crowther
标识
DOI:10.1038/s41467-024-53216-2
摘要
Global warming poses an unprecedented threat to agroecosystems. Although temperature increases are more pronounced during winter than in other seasons, the impact of winter warming on crop biomass carbon has not been elucidated. Here we integrate global observational data with a decade-long field experiment to uncover a significant negative correlation between winter soil temperature and crop biomass carbon. For every degree Celsius increase in winter soil temperature, straw and grain biomass carbon decreased by 6.6 ( ± 1.7) g kg-1 and 10.2 ( ± 2.3) g kg-1, respectively. This decline is primarily attributed to the loss of soil organic matter and micronutrients induced by warming. Ignoring the adverse effects of winter warming on crop biomass carbon could result in an overestimation of total food production by 4% to 19% under future warming scenarios. Our research highlights the critical need to incorporate winter warming into agricultural productivity models for more effective climate adaptation strategies. This study reveals that winter soil warming causes significant crop biomass carbon loss due to soil organic matter degradation. Ignoring this effect could lead to a 4-19% overestimation of future food production.
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