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Litter chemistry prevails over litter consumers in mediating effects of past steel industry activities on leaf litter decomposition

机译:在过去的钢铁行业活动对叶片垫料分解的影响中,垫料化学优于垫料消费者。

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摘要

Soil pollution has adverse effects on the performance and life history traits of microorganisms, plants, and animals, yet evidence indicates that even the most polluted sites can support structurally-complex and dynamic ecosystems. The present study aims at determining whether and how litter decomposition, one of the most important soil ecological processes leaf, is affected in a highly trace-metal polluted site. We postulated that past steel mill activities resulting in soil pollution and associated changes in soil characteristics would influence the rate of litter decomposition through two non-exclusive pathways: altered litter chemistry and responses of decomposers to lethal and sub-lethal toxic stress. We carried out a litter-bag experiment using Populus tremula L. leaf litter collected at, and allowed to decompose in, a trace metal polluted site and in three unpolluted sites used as controls. We designed a fully-factorial transplant experimental design to assess effects of litter origin and exposure site on the rate of litter decomposition. We further determined initial litter chemistry, fungal biomass, mesofauna abundance in litter bags, and the soil macrofauna community. Irrespective of the site of litter exposure, litter originating from the polluted site had a two-fold faster decomposition than litter from the unpolluted sites. Litter chemistry, notably the lignin content, seemed most important in explaining the degradation rate of the leaf litter. Abundance of meso and macro-detritivores was higher at the polluted site than at the unpolluted sites. However, litter decomposition proceeded at similar rates in polluted and unpolluted sites. Our results show that trace metal pollution and associated soil and litter changes do not necessarily weaken consumer control on litter decomposition through lethal and sub-lethal toxic stress.
机译:土壤污染对微生物,植物和动物的性能和生活史特征产生不利影响,但证据表明,即使污染最严重的地区也可以支持结构复杂和动态的生态系统。本研究旨在确定在高度痕量金属污染的地点是否以及如何影响凋落物分解(最重要的土壤生态过程之一)的分解。我们推测过去的钢厂活动导致土壤污染和土壤特性的相关变化将通过两个非排他性途径影响垃圾分解的速率:垃圾化学性质的改变以及分解剂对致死和次致死毒性压力的响应。我们使用收集在微量金属污染部位并允许在其中分解的三叶杨(Populus tremula L.)凋落物进行分解,并在三个未污染的部位用作对照。我们设计了全要素移植实验设计,以评估垃圾来源和接触部位对垃圾分解速率的影响。我们进一步确定了最初的垃圾化学,真菌生物量,垃圾袋中的中型动物群落的丰富度以及土壤大型动物群落。不管垃圾垫层暴露的地点如何,源自污染地点的垃圾垫层的分解速度都比未污染地点的垃圾垫层快两倍。凋落物化学,尤其是木质素含量,似乎最能说明叶片凋落物的降解速率。污染地点的中观和宏观有害物含量高于未污染地点。但是,在受污染和未受污染的地区,垃圾分解的速率相似。我们的结果表明,微量金属污染以及相关的土壤和垃圾变化并不一定会削弱消费者对因致命和次致命毒性毒性而导致的垃圾分解的控制。

著录项

  • 来源
    《The Science of the Total Environment》 |2015年第15期|213-224|共12页
  • 作者单位

    Laboratoire interdisciplinaire des environnements continentaux, CNRS UMR 7360, Universite de Lorraine, 8, rue du gineral Delestraint, 57070 Metz, France;

    Laboratoire ecologie fonctionnelle et environnement, CNRS UMR 5245, Universite Toulouse Ⅲ, 118, route de Narbonne, 31062 Toulouse, France;

    Laboratoire interdisciplinaire des environnements continentaux, CNRS UMR 7360, Universite de Lorraine, 8, rue du gineral Delestraint, 57070 Metz, France;

    Laboratoire interdisciplinaire des environnements continentaux, CNRS UMR 7360, Universite de Lorraine, 8, rue du gineral Delestraint, 57070 Metz, France;

    Laboratoire interdisciplinaire des environnements continentaux, CNRS UMR 7360, Universite de Lorraine, 8, rue du gineral Delestraint, 57070 Metz, France;

    Laboratoire Sols et Environnement, INRA UMR 1120, Universite de Lorraine, 2, avenue de la Foret de Haye, 54505, Vandceuvre-les-Nancy, France;

    Laboratoire interdisciplinaire des environnements continentaux, CNRS UMR 7360, Universite de Lorraine, 8, rue du gineral Delestraint, 57070 Metz, France;

    Laboratoire Sols et Environnement, INRA UMR 1120, Universite de Lorraine, 2, avenue de la Foret de Haye, 54505, Vandceuvre-les-Nancy, France;

    Laboratoire Sols et Environnement, INRA UMR 1120, Universite de Lorraine, 2, avenue de la Foret de Haye, 54505, Vandceuvre-les-Nancy, France;

    Laboratoire interdisciplinaire des environnements continentaux, CNRS UMR 7360, Universite de Lorraine, 8, rue du gineral Delestraint, 57070 Metz, France;

    Centre d'Ecologie Fonctionnelle et Evolutive (CEFE), CNRS - Universite de Montpellier - Universite Paul Valery Montpellier - EPHE, Montpellier Cedex 5, France;

    Laboratoire interdisciplinaire des environnements continentaux, CNRS UMR 7360, Universite de Lorraine, 8, rue du gineral Delestraint, 57070 Metz, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Trace metals; Leaf litter decomposition; Leaf characteristics; Litter bags; Soil biota communities; Soil functioning;

    机译:痕量金属;叶凋落物分解;叶片特性;垃圾袋;土壤生物群落;土壤功能;

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