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细根功能性状对实验性增温的响应:一项全球荟萃分析。

Fine-root functional trait responses to experimental warming: a global meta-analysis.

作者信息

Wang Jinsong, Defrenne Camille, McCormack M Luke, Yang Lu, Tian Dashuan, Luo Yiqi, Hou Enqing, Yan Tao, Li Zhaolei, Bu Wensheng, Chen Ye, Niu Shuli

机构信息

Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing, 100101, China.

Department of Biological Sciences, Center for Ecosystem Sciences and Society, Northern Arizona University, Flagstaff, AZ, 86001, USA.

出版信息

New Phytol. 2021 Jun;230(5):1856-1867. doi: 10.1111/nph.17279. Epub 2021 Apr 4.

Abstract

Whether and how warming alters functional traits of absorptive plant roots remains to be answered across the globe. Tackling this question is crucial to better understanding terrestrial responses to climate change as fine-root traits drive many ecosystem processes. We carried out a detailed synthesis of fine-root trait responses to experimental warming by performing a meta-analysis of 964 paired observations from 177 publications. Warming increased fine-root biomass, production, respiration and nitrogen concentration as well as decreased root carbon : nitrogen ratio and nonstructural carbohydrates. Warming effects on fine-root biomass decreased with greater warming magnitude, especially in short-term experiments. Furthermore, the positive effect of warming on fine-root biomass was strongest in deeper soil horizons and in colder and drier regions. Total fine-root length, morphology, mortality, life span and turnover were unresponsive to warming. Our results highlight the significant changes in fine-root traits in response to warming as well as the importance of warming magnitude and duration in understanding fine-root responses. These changes have strong implications for global soil carbon stocks in a warmer world associated with increased root-derived carbon inputs into deeper soil horizons and increases in fine-root respiration.

摘要

在全球范围内,变暖是否以及如何改变吸收性植物根系的功能性状仍有待解答。解决这个问题对于更好地理解陆地生态系统对气候变化的响应至关重要,因为细根性状驱动着许多生态系统过程。我们通过对177篇出版物中的964对观测数据进行荟萃分析,对细根性状对实验性变暖的响应进行了详细的综合分析。变暖增加了细根生物量、生产量、呼吸作用和氮浓度,同时降低了根碳氮比和非结构性碳水化合物含量。随着变暖幅度的增大,变暖对细根生物量的影响减弱,尤其是在短期实验中。此外,变暖对细根生物量的积极影响在较深的土壤层以及较寒冷和干燥的地区最为显著。细根总长度、形态、死亡率、寿命和周转率对变暖没有反应。我们的研究结果突出了细根性状对变暖的显著变化,以及变暖幅度和持续时间在理解细根响应中的重要性。这些变化对温暖世界中的全球土壤碳储量具有重要意义,这与根系向较深土壤层输入的碳增加以及细根呼吸作用增强有关。

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