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气候变化下森林恢复动态的改变。

Altered dynamics of forest recovery under a changing climate.

机构信息

Smithsonian Conservation Biology Institute, National Zoological Park, Front Royal, VA, USA.

出版信息

Glob Chang Biol. 2013 Jul;19(7):2001-21. doi: 10.1111/gcb.12194. Epub 2013 Apr 3.

Abstract

Forest regeneration following disturbance is a key ecological process, influencing forest structure and function, species assemblages, and ecosystem-climate interactions. Climate change may alter forest recovery dynamics or even prevent recovery, triggering feedbacks to the climate system, altering regional biodiversity, and affecting the ecosystem services provided by forests. Multiple lines of evidence - including global-scale patterns in forest recovery dynamics; forest responses to experimental manipulation of CO2 , temperature, and precipitation; forest responses to the climate change that has already occurred; ecological theory; and ecosystem and earth system models - all indicate that the dynamics of forest recovery are sensitive to climate. However, synthetic understanding of how atmospheric CO2 and climate shape trajectories of forest recovery is lacking. Here, we review these separate lines of evidence, which together demonstrate that the dynamics of forest recovery are being impacted by increasing atmospheric CO2 and changing climate. Rates of forest recovery generally increase with CO2 , temperature, and water availability. Drought reduces growth and live biomass in forests of all ages, having a particularly strong effect on seedling recruitment and survival. Responses of individual trees and whole-forest ecosystems to CO2 and climate manipulations often vary by age, implying that forests of different ages will respond differently to climate change. Furthermore, species within a community typically exhibit differential responses to CO2 and climate, and altered community dynamics can have important consequences for ecosystem function. Age- and species-dependent responses provide a mechanism by which climate change may push some forests past critical thresholds such that they fail to recover to their previous state following disturbance. Altered dynamics of forest recovery will result in positive and negative feedbacks to climate change. Future research on this topic and corresponding improvements to earth system models will be a key to understanding the future of forests and their feedbacks to the climate system.

摘要

森林干扰后的再生是一个关键的生态过程,影响着森林结构和功能、物种组合以及生态系统与气候的相互作用。气候变化可能会改变森林恢复的动态,甚至阻止恢复,从而引发对气候系统的反馈,改变区域生物多样性,并影响森林提供的生态系统服务。多种证据——包括森林恢复动态的全球尺度格局;对 CO2、温度和降水的实验性操纵对森林的响应;已经发生的气候变化对森林的响应;生态理论;以及生态系统和地球系统模型——都表明森林恢复的动态对气候敏感。然而,对于大气 CO2 和气候如何塑造森林恢复轨迹的综合理解还很缺乏。在这里,我们回顾了这些独立的证据,它们共同表明,森林恢复的动态正在受到大气 CO2 和气候变化的影响。森林恢复的速度通常随着 CO2、温度和水分的增加而增加。干旱降低了所有年龄段森林的生长和活体生物量,对幼苗的补充和存活有特别强烈的影响。个别树木和整个森林生态系统对 CO2 和气候操纵的反应通常因年龄而异,这意味着不同年龄的森林将对气候变化有不同的反应。此外,群落内的物种通常对 CO2 和气候表现出不同的响应,而群落动态的改变可能对生态系统功能产生重要影响。年龄和物种依赖的响应为气候变化可能推动一些森林越过关键阈值提供了一种机制,以至于它们在受到干扰后无法恢复到以前的状态。森林恢复动态的改变将对气候变化产生正反馈和负反馈。未来关于这一主题的研究和对地球系统模型的相应改进将是理解未来森林及其对气候系统反馈的关键。

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