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在重度污染的工业荒地中桦树叶的分解:叶片质量和暴露位置的相对重要性。

Decomposition of birch leaves in heavily polluted industrial barrens: relative importance of leaf quality and site of exposure.

机构信息

Section of Ecology, Faculty of Biology, University of Turku, 20014, Turku, Finland,

出版信息

Environ Sci Pollut Res Int. 2015 Jul;22(13):9943-50. doi: 10.1007/s11356-015-4165-8. Epub 2015 Feb 8.

Abstract

The decrease in litter decomposition rate in polluted habitats is well documented, but the factors that explain the observed variation in the magnitude of this pollution effect on litter decomposition remain poorly understood. We explored effects of environmental conditions and leaf quality on decomposition rate of mountain birch (Betula pubescens ssp. czerepanovii) leaves in a heavily polluted industrial barren near the nickel-copper smelter at Monchegorsk. Litter bags filled with leaves collected from two heavily polluted barren sites and from two control forest sites were buried at 2.5-cm depth and exposed for 2 and 4 years at each of these four sites. The relative mass loss of native leaves in the industrial barren during 2 years of exposure was reduced to 49% of the loss observed in the unpolluted forest. We found a similar reduction in mass loss when leaves from control sites were exposed to polluted sites and when leaves from polluted sites were exposed to control sites. We conclude that the reduction in leaf litter decomposition in an industrial barren is caused by pollution-induced changes in both environmental conditions and leaf quality. This reduction is much smaller than expected, given the four-fold decrease in soil microbial activity and nearly complete extinction of saprophagous invertebrates in the polluted soil. We suggest that a longer snowless period and higher spring and summer temperatures at the barren sites have partially counterbalanced the adverse effects caused by the toxicity of metal pollutants.

摘要

受污染生境中凋落物分解速率的下降已得到充分证实,但解释观察到的这种污染对凋落物分解影响程度的变化的因素仍知之甚少。我们探讨了环境条件和叶片质量对蒙切哥尔斯克镍铜冶炼厂附近重度污染荒地中高山桦(Betula pubescens ssp. czerepanovii)叶片分解速率的影响。从两个重度污染荒地和两个对照森林采集的叶片装入垃圾袋,埋于 2.5cm 深,并在这四个地点的每个地点分别暴露 2 年和 4 年。在 2 年的暴露期间,原生叶在工业区荒地中的相对质量损失减少到未受污染森林中观察到的损失的 49%。当对照点的叶片暴露在污染点,或当污染点的叶片暴露在对照点时,我们发现质量损失也有类似的减少。我们得出结论,工业区荒地中凋落物分解的减少是由污染引起的环境条件和叶片质量变化共同造成的。鉴于污染土壤中微生物活性降低四倍,腐生无脊椎动物几乎完全灭绝,这种减少要小得多。我们认为,荒地中无雪期延长,春季和夏季温度升高,部分抵消了金属污染物毒性造成的不利影响。

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