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酸性水生环境的微生物群落组成与生态:西班牙廷托河

Microbial Community Composition and Ecology of an Acidic Aquatic Environment: The Tinto River, Spain.

作者信息

López-Archilla A.I., Marin I., Amils R.

机构信息

Centro de Biología Molecular, Universidad Autónoma de Madrid, Cantoblanco, 28049 Madrid, Spain.

出版信息

Microb Ecol. 2001 Jan;41(1):20-35. doi: 10.1007/s002480000044.

Abstract

We studied the correlation between physicochemical and biological characteristics of an acidic river, the Tinto River, in Southwestern Spain. The Tinto River is an extreme environment characterized by its low pH (mean of 2.2) and high concentrations of heavy metals (Fe 2.3 g/L, Zn 0.22 g/L, Cu 0.11 g/L). These extreme conditions are the product of the metabolic activity of chemolithotrophic microorganisms, including iron- and sulfur-oxidizing bacteria, that can be found in high concentrations in its waters. The food chain in the river is very constrained and exclusively microbial. Primary productivity in the Tinto River is the sum of photosynthetic and chemolithotrophic activity. Heterotrophic bacteria and fungi are the major decomposers and protists are the major predators. A correlation analysis including the physicochemical and biological variables suggested a close relationship between the acidic pH values and abundance of both chemolithotrophic bacteria and filamentous fungi. Chemolithotrophic bacteria correlated with the heavy metals found in the river. A principal component analysis of the biotic and abiotic variables suggested that the Tinto River ecosystem can be described as a function of three main groups of variables: pH values, metal concentrations, and biological productivity.

摘要

我们研究了西班牙西南部一条酸性河流廷托河的物理化学特性与生物学特性之间的相关性。廷托河是一个极端环境,其特点是pH值低(平均为2.2)且重金属浓度高(铁2.3克/升、锌0.22克/升、铜0.11克/升)。这些极端条件是化能无机营养微生物代谢活动的产物,包括铁氧化细菌和硫氧化细菌,它们在河水当中大量存在。该河流中的食物链非常有限,且完全由微生物构成。廷托河的初级生产力是光合活动和化能无机营养活动的总和。异养细菌和真菌是主要的分解者,原生生物是主要的捕食者。一项涵盖物理化学和生物学变量的相关性分析表明,酸性pH值与化能无机营养细菌和丝状真菌的丰度之间存在密切关系。化能无机营养细菌与河流中发现的重金属相关。对生物和非生物变量进行的主成分分析表明,廷托河生态系统可以用三组主要变量来描述:pH值、金属浓度和生物生产力。

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