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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Disconnect of microbial structure and function: Enzyme activities and bacterial communities in nascent stream corridors
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Disconnect of microbial structure and function: Enzyme activities and bacterial communities in nascent stream corridors

机译:断开微生物的结构和功能:新生河道中的酶活性和细菌群落

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摘要

A fundamental issue in microbial and general ecology is the question to what extent environmental conditions dictate the structure of communities and the linkages with functional properties of ecosystems (that is, ecosystem function). We approached this question by taking advantage of environmental gradients established in soil and sediments of small stream corridors in a recently created, early successional catchment. Specifically, we determined spatial and temporal patterns of bacterial community structure and their linkages with potential microbial enzyme activities along the hydrological flow paths of the catchment. Soil and sediments were sampled in a total of 15 sites on four occasions spread throughout a year. Denaturing gradient gel electrophoresis (DGGE) was used to characterize bacterial communities, and substrate analogs linked to fluorescent molecules served to track 10 different enzymes as specific measures of ecosystem function. Potential enzyme activities varied little among sites, despite contrasting environmental conditions, especially in terms of water availability. Temporal changes, in contrast, were pronounced and remarkably variable among the enzymes tested. This suggests much greater importance of temporal dynamics than spatial heterogeneity in affecting specific ecosystem functions. Most strikingly, bacterial community structure revealed neither temporal nor spatial patterns. The resulting disconnect between bacterial community structure and potential enzyme activities indicates high functional redundancy within microbial communities even in the physically and biologically simplified stream corridors of early successional landscapes.
机译:微生物和一般生态学的一个基本问题是,环境条件在多大程度上决定着社区的结构以及与生态系统功能特性(即生态系统功能)的联系。我们通过利用在最近建立的早期演替流域的小河廊道的土壤和沉积物中建立的环境梯度来解决这个问题。具体来说,我们确定了流域水文流动路径上细菌群落结构的时空格局及其与潜在微生物酶活性的联系。一年中共四次在15个地点采样土壤和沉积物。变性梯度凝胶电泳(DGGE)用于表征细菌群落,与荧光分子连接的底物类似物可追踪10种不同的酶,作为生态系统功能的特定度量。尽管环境条件存在差异,但潜在的酶活性在各个位点之间变化不大,尤其是在水供应方面。相反,在所测试的酶中,时间变化是明显的并且是明显变化的。这表明在影响特定的生态系统功能方面,时间动态比空间异质性更为重要。最为显着的是,细菌群落结构既没有显示出时间形态也没有显示出空间形态。由此产生的细菌群落结构与潜在酶活性之间的脱节表明,即使在早期演替景观的物理和生物简化流道中,微生物群落也具有高度的功能冗余。

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