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在更温暖、更干燥的条件下,土壤食腐动物的摄食活动减少。

Reduced feeding activity of soil detritivores under warmer and drier conditions.

作者信息

Thakur Madhav P, Reich Peter B, Hobbie Sarah E, Stefanski Artur, Rich Roy, Rice Karen E, Eddy William C, Eisenhauer Nico

机构信息

German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, Deutscher Platz 5e, 04103 Leipzig, Germany.

Institute of Biology, Leipzig University, Deutscher Platz 5e, 04103 Leipzig, Germany.

出版信息

Nat Clim Chang. 2018 Jan;8(1):75-78. doi: 10.1038/s41558-017-0032-6. Epub 2017 Dec 18.

Abstract

Anthropogenic warming is projected to trigger positive feedbacks to climate by enhancing carbon losses from the soil1. While such losses are, in part, owing to increased decomposition of organic matter by invertebrate detritivores, it is unknown how detritivore feeding activity will change with warming2, especially under drought conditions. Here, using four year manipulation experiments in two North American boreal forests, we investigate how temperature (ambient, +1.7 °C, +3.4 °C) and rainfall (ambient, -40% summer precipitation) perturbations influence detritivore feeding activity. In contrast to general expectations1,3, warming had negligible net effects on detritivore feeding activity at ambient precipitation. However, when combined with precipitation reductions, warming decreased feeding activity by ~14%. As across all plots and dates, detritivore feeding activity was positively associated to bulk soil microbial respiration, our results suggest slower rates of decomposition of soil organic matter, and thus reduced positive feedbacks to climate under anthropogenic climate change.

摘要

预计人为变暖将通过增加土壤中的碳损失来引发对气候的正反馈。虽然这种损失部分是由于无脊椎动物分解者对有机物质的分解增加,但尚不清楚分解者的取食活动将如何随变暖而变化,特别是在干旱条件下。在这里,我们利用在两个北美北方森林进行的为期四年的操纵实验,研究温度(环境温度、+1.7℃、+3.4℃)和降雨(环境降雨、夏季降水量减少40%)扰动如何影响分解者的取食活动。与一般预期相反,在环境降水条件下,变暖对分解者的取食活动净影响可忽略不计。然而,当与降水减少相结合时,变暖使取食活动降低了约14%。由于在所有样地和日期,分解者的取食活动与土壤微生物总呼吸呈正相关,我们的结果表明土壤有机质分解速率减慢,从而在人为气候变化下减少了对气候的正反馈。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b36c/5777625/36657d111eac/emss-75016-f001.jpg

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