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碎屑食者将凋落物转化为粪便会加速有机质的周转。

Detritivore conversion of litter into faeces accelerates organic matter turnover.

机构信息

Biological and Environmental Sciences, University of Stirling, Stirling, FK9 4LA, UK.

CEFE, Univ Montpellier, CNRS, EPHE, IRD, Univ Paul-Valéry Montpellier 3, Montpellier, France.

出版信息

Commun Biol. 2020 Nov 11;3(1):660. doi: 10.1038/s42003-020-01392-4.

Abstract

Litter-feeding soil animals are notoriously neglected in conceptual and mechanistic biogeochemical models. Yet, they may be a dominant factor in decomposition by converting large amounts of plant litter into faeces. Here, we assess how the chemical and physical changes occurring when litter is converted into faeces alter their fate during further decomposition with an experimental test including 36 combinations of phylogenetically distant detritivores and leaf litter of contrasting physicochemical characteristics. We show that, across litter and detritivore species, litter conversion into detritivore faeces enhanced organic matter lability and thereby accelerated carbon cycling. Notably, the positive conversion effect on faeces quality and decomposition increased with decreasing quality and decomposition of intact litter. This general pattern was consistent across detritivores as different as snails and woodlice, and reduced differences in quality and decomposition amongst litter species. Our data show that litter conversion into detritivore faeces has far-reaching consequences for the understanding and modelling of the terrestrial carbon cycle.

摘要

喂养幼仔的土壤动物在概念和机制生物地球化学模型中被严重忽视。然而,它们可能是分解的主要因素,因为它们将大量植物凋落物转化为粪便。在这里,我们评估了当凋落物转化为粪便时发生的化学和物理变化如何改变它们在进一步分解过程中的命运,包括 36 种具有不同系统发育距离的碎屑分解者和具有不同物理化学特性的叶片凋落物的实验测试。我们表明,在凋落物和碎屑分解者物种之间,凋落物转化为碎屑分解者粪便增强了有机物质的易变,从而加速了碳循环。值得注意的是,对粪便质量和分解的积极转化效应随着完整凋落物质量和分解的降低而增加。这种一般模式在蜗牛和木虱等不同的碎屑分解者中是一致的,并减少了凋落物物种之间的质量和分解差异。我们的数据表明,凋落物转化为碎屑分解者粪便对陆地碳循环的理解和建模具有深远的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4028/7658975/3f9766b05855/42003_2020_1392_Fig1_HTML.jpg

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