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黄石国家公园蘑菇泉微生物席中聚球藻生态多样性的精细分布模式。

Fine-scale distribution patterns of Synechococcus ecological diversity in microbial mats of Mushroom Spring, Yellowstone National Park.

机构信息

Department of Land Resources and Environmental Sciences, Montana State University, 334 Leon Johnson Hall, Bozeman, MT 59715, USA.

出版信息

Appl Environ Microbiol. 2011 Nov;77(21):7689-97. doi: 10.1128/AEM.05927-11. Epub 2011 Sep 2.

Abstract

Past analyses of sequence diversity in high-resolution protein-encoding genes have identified putative ecological species of unicellular cyanobacteria in the genus Synechococcus, which are specialized to 60°C but not 65°C in Mushroom Spring microbial mats. Because these studies were limited to only two habitats, we studied the distribution of Synechococcus sequence variants at 1°C intervals along the effluent flow channel and at 80-μm vertical-depth intervals throughout the upper photic layer of the microbial mat. Diversity at the psaA locus, which encodes a photosynthetic reaction center protein (PsaA), was sampled by PCR amplification, cloning, and sequencing methods at 60, 63, and 65°C sites. The evolutionary simulation programs Ecotype Simulation and AdaptML were used to identify putative ecologically distinct populations (ecotypes). Ecotype Simulation predicted a higher number of putative ecotypes in cases where habitat variation was limited, while AdaptML predicted a higher number of ecologically distinct phylogenetic clades in cases where habitat variation was high. Denaturing gradient gel electrophoresis was used to track the distribution of dominant sequence variants of ecotype populations relative to temperature variation and to O₂, pH, and spectral irradiance variation, as measured using microsensors. Different distributions along effluent channel flow and vertical gradients, where temperature, light, and O₂ concentrations are known to vary, confirmed the ecological distinctness of putative ecotypes.

摘要

过去对高分辨率蛋白质编码基因序列多样性的分析已经鉴定出了属于聚球藻属的单细胞蓝细菌的假定生态种,它们专门适应 60°C 而不是蘑菇泉微生物席中的 65°C。由于这些研究仅限于两个栖息地,我们在沿污水流道以 1°C 的间隔和在微生物席上层的 80-μm 垂直深度间隔处研究了聚球藻序列变体的分布。通过 PCR 扩增、克隆和测序方法,在 60、63 和 65°C 位点采样了编码光合反应中心蛋白(PsaA)的 psaA 基因座的多样性。进化模拟程序 Ecotype Simulation 和 AdaptML 用于识别具有假定生态差异的种群(生态型)。在栖息地变化有限的情况下,Ecotype Simulation 预测了更多的假定生态型,而在栖息地变化较大的情况下,AdaptML 预测了更多具有生态差异的系统发育分支。变性梯度凝胶电泳用于跟踪与温度变化以及使用微传感器测量的 O₂、pH 和光谱辐照度变化相关的生态型种群的优势序列变体的分布。在已知温度、光照和 O₂浓度变化的污水流道和垂直梯度上的不同分布,证实了假定生态型的生态差异。

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