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酸化溪流中铝和磷对微生物叶凋落物处理的交互作用:微宇宙方法。

Interactive effects of aluminium and phosphorus on microbial leaf litter processing in acidified streams: a microcosm approach.

机构信息

Université de Lorraine, CNRS UMR 7360, Laboratoire Interdisciplinaire des Environnements Continentaux (LIEC), Campus Bridoux, Rue du Général Delestraint, 57070 Metz, France.

Université de Lorraine, CNRS UMR 7360, Laboratoire Interdisciplinaire des Environnements Continentaux (LIEC), Campus Bridoux, Rue du Général Delestraint, 57070 Metz, France.

出版信息

Environ Pollut. 2014 Mar;186:67-74. doi: 10.1016/j.envpol.2013.11.024. Epub 2013 Dec 20.

Abstract

Decline in pH, elevated aluminium (Al) concentrations, and base cations depletion often covary in acidified headwater streams. These parameters are considered as the main factors reducing microbial activities involved in detritus processing, but their individual and interactive effects are still unclear. In addition to its direct toxicity, Al can also reduce the bioavailability of phosphorus (P) in ecosystems through the formation of stable chemical complexes. A three week microcosm experiment was carried out in acid conditions to assess the interactive effects of Al (three levels: 0, 200, and 1,000 μg L(-1)) and P (25, 100, and 1,000 μg L(-1)) on alder leaf litter processing by an aquatic hyphomycete consortium. Our results showed that Al alone reduced fungal growth and altered fungal decomposer activities. High P levels, probably through an alleviation of Al-induced P limitation and a reduction of Al toxic forms, suppressed the negative effects of Al on detritus decomposition.

摘要

在酸化的源头溪流中,pH 值下降、铝(Al)浓度升高和基础阳离子枯竭通常同时发生。这些参数被认为是降低参与碎屑处理的微生物活性的主要因素,但它们的单独和相互作用的影响尚不清楚。除了直接毒性外,铝还可以通过形成稳定的化学络合物来降低生态系统中磷(P)的生物利用度。在酸性条件下进行了为期三周的微宇宙实验,以评估 Al(三个水平:0、200 和 1,000 μg L(-1)) 和 P(25、100 和 1,000 μg L(-1)) 对水霉菌联合体处理桤木叶凋落物的相互作用影响。我们的结果表明,铝单独降低了真菌的生长并改变了真菌分解者的活性。高磷水平可能通过缓解铝诱导的磷限制和减少铝的有毒形式,抑制了铝对碎屑分解的负面影响。

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