Biological and Environmental Sciences, School of Natural Sciences, University of Stirling, Stirling, UK.
Ecology. 2021 Apr;102(4):e03299. doi: 10.1002/ecy.3299. Epub 2021 Mar 8.
Understanding the consequences of altered rainfall patterns on litter decomposition is critical to predicting the feedback effect of climate change on atmospheric CO concentrations. Although their effect on microbial decomposition has received considerable attention, their effect on litter fragmentation by detritivores, the other dominant decomposition pathway, remains largely unexplored. Particularly, it remains unclear how different detritivore species and their interactions respond to changes in rainfall quantity and frequency. To fill this knowledge gap, we determined the contribution to litter decomposition of two detritivore species (millipede and isopod), separately and in combination, under contrasting rainfall quantity and frequency in a temperate forest. Although halving rainfall quantity and frequency decreased topsoil moisture by 7.8 and 13.1%, respectively, neither millipede- nor isopod-driven decomposition were affected by these changes. In contrast, decomposition driven by both detritivore species in combination was 65.5% higher than expected based on monospecific treatments under high rainfall quantity, but unchanged or even lower under low rainfall quantity. This indicates that although detritivore activity is relatively insensitive to changes in rainfall patterns, large synergistic interactions between detritivore species may disappear under future rainfall patterns. Incorporating interspecific interactions between decomposers thus seems critical to evaluate the sensitivity of decomposition to altered rainfall patterns.
了解降雨模式改变对凋落物分解的影响对于预测气候变化对大气 CO2浓度的反馈效应至关重要。尽管它们对微生物分解的影响已经受到了相当多的关注,但它们对碎屑分解者(另一种主要的分解途径)引起的凋落物碎裂的影响在很大程度上仍未得到探索。特别是,不同碎屑分解者物种及其相互作用如何响应降雨量和频率的变化仍不清楚。为了填补这一知识空白,我们在温带森林中,确定了两种碎屑分解者物种(千足虫和等足目动物)在不同的降雨量和频率下,单独和组合作用对凋落物分解的贡献。尽管将降雨量和频率减半分别使表土湿度降低了 7.8%和 13.1%,但千足虫和等足目动物驱动的分解都不受这些变化的影响。相比之下,两种碎屑分解者组合驱动的分解在高降雨量下比单种处理的预期值高出 65.5%,但在低降雨量下不变甚至更低。这表明,尽管碎屑分解者的活动对降雨模式的变化相对不敏感,但未来的降雨模式可能会使碎屑分解者物种之间的大协同相互作用消失。因此,纳入分解者之间的种间相互作用似乎对于评估分解对改变的降雨模式的敏感性至关重要。