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栖息地异质性对淡水细菌群落组成和动态的影响。

The influence of habitat heterogeneity on freshwater bacterial community composition and dynamics.

作者信息

Shade Ashley, Jones Stuart E, McMahon Katherine D

机构信息

Microbiology Doctoral Training Program, University of Wisconsin-Madison, Madison, WI 52706, USA.

出版信息

Environ Microbiol. 2008 Apr;10(4):1057-67. doi: 10.1111/j.1462-2920.2007.01527.x. Epub 2008 Jan 23.

Abstract

Multiple forces structure natural microbial communities, but the relative roles and interactions of these drivers are poorly understood. Gradients of physical and chemical parameters can be especially influential. In traditional ecological theory, variability in environmental conditions across space and time represents habitat heterogeneity, which may shape communities. Here we used aquatic microbial communities as a model to investigate the relationship between habitat heterogeneity and community composition and dynamics. We defined spatial habitat heterogeneity as vertical temperature and dissolved oxygen (DO) gradients in the water column, and temporal habitat heterogeneity as variation throughout the open-water season in these environmental parameters. Seasonal lake mixing events contribute to temporal habitat heterogeneity by destroying and re-creating these gradients. Because of this, we selected three lakes along a range of annual mixing frequency (polymictic, dimictic, meromictic) for our study. We found that bacterial community composition (BCC) was distinct between the epilimnion and hypolimnion within stratified lakes, and also more variable within the epilimnia through time. We found stark differences in patterns of epilimnion and hypolimnion dynamics over time and across lakes, suggesting that specific drivers have distinct relative importance for each community.

摘要

多种力量塑造了自然微生物群落,但这些驱动因素的相对作用和相互作用却鲜为人知。物理和化学参数的梯度可能特别具有影响力。在传统生态理论中,环境条件随空间和时间的变化代表了栖息地异质性,这可能会塑造群落。在这里,我们以水生微生物群落为模型,研究栖息地异质性与群落组成和动态之间的关系。我们将空间栖息地异质性定义为水柱中的垂直温度和溶解氧(DO)梯度,将时间栖息地异质性定义为这些环境参数在整个敞水区季节的变化。季节性湖泊混合事件通过破坏和重新建立这些梯度,导致时间栖息地异质性。因此,我们选择了三个具有不同年度混合频率(多循环、双循环、寡循环)的湖泊进行研究。我们发现,在分层湖泊中,表水层和底水层的细菌群落组成(BCC)不同,而且表水层内的群落组成随时间变化更大。我们发现,表水层和底水层随时间和跨湖泊的动态模式存在显著差异,这表明特定驱动因素对每个群落具有不同的相对重要性。

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