School of Life Sciences, University of Warwick, Coventry, UK.
Microb Ecol. 2012 May;63(4):856-64. doi: 10.1007/s00248-011-9993-6. Epub 2011 Dec 20.
A reductionist ecological approach of using a model genus was adopted in order to understand how microbial community structure is driven by metabolic properties. The distribution along an estuarine gradient of the highly specialised genus Methanosaeta was investigated and compared to the previously determined distribution of the more metabolically flexible Desulfobulbus. Methanosaeta genotypic distribution along the Colne estuary (Essex, UK) was determined by DNA- and RNA-based denaturing gradient gel electrophoresis and 16S rRNA gene sequence analyses. Methanosaeta distribution was monotonic, with a consistently diverse community and no apparent niche partitioning either in DNA or RNA analyses. This distribution pattern contrasts markedly with the previously described niche partitioning and sympatric differentiation of the model generalist, Desulfobulbus. To explain this difference, it is hypothesised that Methanosaeta's strict metabolic needs limit its adaptation potential, thus populations do not partition into spatially distinct groups and so do not appear to be constrained by gross environmental factors such as salinity. Thus, at least for these two model genera, it appears that metabolic flexibility may be an important factor in spatial distribution and this may be applicable to other microbes.
为了了解微生物群落结构是如何受到代谢特性驱动的,采用了一种简化的生态方法,使用一个模式属。研究了高度专业化的甲烷八叠球菌属在河口梯度中的分布,并与先前确定的代谢灵活性更强的脱硫弧菌属的分布进行了比较。通过 DNA 和 RNA 变性梯度凝胶电泳和 16S rRNA 基因序列分析,确定了 Colne 河口(英国埃塞克斯)的甲烷八叠球菌属的基因分布。甲烷八叠球菌属的分布呈单调递增趋势,无论是在 DNA 还是 RNA 分析中,其群落都始终保持多样性,没有明显的生态位划分。这种分布模式与先前描述的模型广域种脱硫弧菌属的生态位划分和同域分化形成鲜明对比。为了解释这种差异,假设甲烷八叠球菌属严格的代谢需求限制了其适应潜力,因此种群不会划分到空间上不同的群体,因此似乎不受盐度等宏观环境因素的限制。因此,至少对于这两个模型属来说,代谢灵活性似乎是空间分布的一个重要因素,这可能适用于其他微生物。