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热浪对陆地生态系统碳通量的影响复杂性:因素、机制和多阶段分析方法。

The complexity of heatwaves impact on terrestrial ecosystem carbon fluxes: Factors, mechanisms and a multi-stage analytical approach.

机构信息

College of JunCao Science and Ecology, Fujian Agriculture and Forestry University, Fuzhou, China.

Center for Global Change & Earth Observations (CGCEO), Michigan State University, East Lansing, MI, 48823, USA.

出版信息

Environ Res. 2024 Jan 1;240(Pt 1):117495. doi: 10.1016/j.envres.2023.117495. Epub 2023 Oct 27.

DOI:10.1016/j.envres.2023.117495
PMID:37890820
Abstract

Extreme heatwaves have become more frequent and severe in recent decades, and are expected to significantly influence carbon fluxes at regional scales across global terrestrial ecosystems. Nevertheless, accurate prediction of future heatwave impacts remains challenging due to a lack of a consistent comprehension of intrinsic and extrinsic mechanisms. We approached this knowledge gap by analyzing the complexity factors in heatwave studies, including the methodology for determining heatwave events, divergent responses of individual ecosystem components at multiple ecological and temporal scales, and vegetation status and hydrothermal environment, among other factors. We found that heatwaves essentially are continuously changing compound environmental stress that can unfold into multiple chronological stages, and plant physiology and carbon flux responses differs in each of these stages. This approach offers a holistic perspective, recognizing that the impacts of heatwaves on ecosystems can be better understood when evaluated over time. These stages include instantaneous, post-heatwave, legacy, and cumulative effects, each contributing uniquely to the overall impact on the ecosystem carbon cycle. Next, we investigated the importance of the timing of heatwaves and the possible divergent consequences caused by different annual heatwave patterns. Finally, a conceptual framework is proposed to establish a united foundation for the study and comprehension of the consequences of heatwaves on ecosystem carbon cycle. This instrumental framework will assist in guiding regional assessments of heatwave impacts, shedding light on the underlying mechanisms responsible for the varied responses of terrestrial ecosystems to specific heatwave events, which are imperative for devising efficient adaptation and mitigation approaches.

摘要

近几十年来,极端热浪变得更加频繁和剧烈,预计将对 全球陆地生态系统的区域尺度碳通量产生重大影响。然而,由于缺乏对内在和外在机制的一致理解,准确预测未来热浪的影响仍然具有挑战性。我们通过分析热浪研究中的复杂性因素来解决这一知识差距,这些因素包括确定热浪事件的方法、不同生态系统组成部分在多个生态和时间尺度上的不同响应,以及植被状况和水热环境等因素。我们发现,热浪本质上是不断变化的复杂环境压力,可能会展开为多个时间阶段,植物生理和碳通量的响应在每个阶段都有所不同。这种方法提供了一个整体的视角,认识到当从时间上评估时,热浪对生态系统的影响可以更好地理解。这些阶段包括瞬时、热浪后、遗留和累积效应,每个阶段都对生态系统碳循环的整体影响有独特的贡献。接下来,我们研究了热浪时间的重要性以及不同的年度热浪模式可能导致的不同后果。最后,提出了一个概念框架,为研究和理解热浪对生态系统碳循环的影响建立一个统一的基础。这个工具框架将有助于指导对热浪影响的区域评估,揭示导致陆地生态系统对特定热浪事件产生不同响应的潜在机制,这对于制定有效的适应和缓解措施至关重要。

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