Global negative vegetation feedback to climate warming responses of leaf litter decomposition rates in cold biomes

生物群落 全球变暖 环境科学 生态学 生态系统 灌木 气候变化 垃圾箱 冻土带 植物凋落物 全球变化 北极的 碳循环 生物
作者
Johannes H. C. Cornelissen,Peter M. van Bodegom,Rien Aerts,Terry V. Callaghan,Richard S. P. van Logtestijn,Juha M. Alatalo,F. Stuart Chapin,Renato Gerdol,Jón Guðmundsson,Dylan Gwynn‐Jones,Anne E. Hartley,David S. Hik,Annika Hofgaard,Ingibjörg S. Jónsdóttir,P. Staffan Karlsson,Julia A. Klein,James A. Laundre,Borgþór Magnússon,Anders Michelsen,Ulf Molau,В. Г. Онипченко,Helen M. Quested,Sylvi M. Sandvik,Inger Kappel Schmidt,Gus Shaver,Bjørn Solheim,Nadejda A. Soudzilovskaia,Anna Stenström,Anne Tolvanen,Ørjan Totland,Naoya Wada,J. M. Welker,Xinquan Zhao
出处
期刊:Ecology Letters [Wiley]
卷期号:10 (7): 619-627 被引量:454
标识
DOI:10.1111/j.1461-0248.2007.01051.x
摘要

Abstract Whether climate change will turn cold biomes from large long‐term carbon sinks into sources is hotly debated because of the great potential for ecosystem‐mediated feedbacks to global climate. Critical are the direction, magnitude and generality of climate responses of plant litter decomposition. Here, we present the first quantitative analysis of the major climate‐change‐related drivers of litter decomposition rates in cold northern biomes worldwide. Leaf litters collected from the predominant species in 33 global change manipulation experiments in circum‐arctic‐alpine ecosystems were incubated simultaneously in two contrasting arctic life zones. We demonstrate that longer‐term, large‐scale changes to leaf litter decomposition will be driven primarily by both direct warming effects and concomitant shifts in plant growth form composition, with a much smaller role for changes in litter quality within species. Specifically, the ongoing warming‐induced expansion of shrubs with recalcitrant leaf litter across cold biomes would constitute a negative feedback to global warming. Depending on the strength of other (previously reported) positive feedbacks of shrub expansion on soil carbon turnover, this may partly counteract direct warming enhancement of litter decomposition.

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