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人类的间接影响逆转了几个世纪以来的碳封存和盐沼堆积过程。

Indirect human impacts reverse centuries of carbon sequestration and salt marsh accretion.

作者信息

Coverdale Tyler C, Brisson Caitlin P, Young Eric W, Yin Stephanie F, Donnelly Jeffrey P, Bertness Mark D

机构信息

Department of Ecology and Evolutionary Biology, Brown University, Providence, Rhode Island, United States of America.

Woods Hole Oceanographic Institution, Woods Hole, Massachusetts, United States of America.

出版信息

PLoS One. 2014 Mar 27;9(3):e93296. doi: 10.1371/journal.pone.0093296. eCollection 2014.

Abstract

Direct and indirect human impacts on coastal ecosystems have increased over the last several centuries, leading to unprecedented degradation of coastal habitats and loss of ecological services. Here we document a two-century temporal disparity between salt marsh accretion and subsequent loss to indirect human impacts. Field surveys, manipulative experiments and GIS analyses reveal that crab burrowing weakens the marsh peat base and facilitates further burrowing, leading to bank calving, disruption of marsh accretion, and a loss of over two centuries of sequestered carbon from the marsh edge in only three decades. Analogous temporal disparities exist in other systems and are a largely unrecognized obstacle in attaining sustainable ecosystem services in an increasingly human impacted world. In light of the growing threat of indirect impacts worldwide and despite uncertainties in the fate of lost carbon, we suggest that estimates of carbon emissions based only on direct human impacts may significantly underestimate total anthropogenic carbon emissions.

摘要

在过去几个世纪里,人类对沿海生态系统的直接和间接影响不断增加,导致沿海栖息地出现前所未有的退化以及生态服务功能丧失。在此,我们记录了盐沼堆积与随后因间接人类影响而丧失之间长达两个世纪的时间差异。实地调查、操纵性实验和地理信息系统分析表明,螃蟹挖掘会削弱沼泽泥炭层底部,并促使进一步挖掘,导致堤岸崩塌、沼泽堆积中断,仅在三十年内就使沼泽边缘两个多世纪以来封存的碳流失。其他系统中也存在类似的时间差异,这在日益受人类影响的世界中,是实现可持续生态系统服务的一个很大程度上未被认识到的障碍。鉴于全球间接影响的威胁日益增加,尽管流失碳的去向存在不确定性,但我们认为仅基于人类直接影响的碳排放估计可能会显著低估总人为碳排放量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c68/3968132/2230c3ae2ef8/pone.0093296.g001.jpg

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