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富集培养和显微镜检查掩盖了单一温泉微生物垫栖息地中不同的嗜热聚球藻种群。

Enrichment culture and microscopy conceal diverse thermophilic Synechococcus populations in a single hot spring microbial mat habitat.

作者信息

Ferris M J, Ruff-Roberts A L, Kopczynski E D, Bateson M M, Ward D M

机构信息

Department of Microbiology, Montana State University, Bozeman, 59717, USA.

出版信息

Appl Environ Microbiol. 1996 Mar;62(3):1045-50. doi: 10.1128/aem.62.3.1045-1050.1996.

Abstract

Recent molecular studies have shown a great disparity between naturally occurring and cultivated microorganisms. We investigated the basis for disparity by studying thermophilic unicellular cyanobacteria whose morphologic simplicity suggested that a single cosmopolitan species exists in hot spring microbial mats worldwide. We found that partial 16S rRNA sequences for all thermophilic Synechococcus culture collection strains from diverse habitats are identical. Through oligonucleotide probe analysis and cultivation, we provide evidence that this species is strongly selected for in laboratory culture to the exclusion of many more-predominant cyanobacterial species coexisting in the Octopus Spring mat in Yellowstone National Park. The phylogenetic diversity among Octopus Spring cyanobacteria is of similar magnitude to that exhibited by all cyanobacteria so far investigated. We obtained axenic isolates of two predominant cyanobacterial species by diluting inocula prior to enrichment. One isolate has a 16S rRNA sequence we have not yet detected by cloning. The other has a 16S rRNA sequence identical to a new cloned sequence we report herein. This is the first cultivated species whose 16S rRNA sequence has been detected in this mat system by cloning. We infer that biodiversity within this community is linked to guild structure.

摘要

最近的分子研究表明,天然存在的微生物与培养的微生物之间存在巨大差异。我们通过研究嗜热单细胞蓝细菌来探究这种差异的基础,这类蓝细菌形态简单,这表明在全球温泉微生物垫中存在单一的世界性物种。我们发现,来自不同栖息地的所有嗜热聚球藻培养物保藏菌株的部分16S rRNA序列是相同的。通过寡核苷酸探针分析和培养,我们提供了证据,表明在实验室培养中该物种被强烈选择,而黄石国家公园章鱼泉微生物垫中共存的许多更占优势的蓝细菌物种则被排除在外。章鱼泉蓝细菌之间的系统发育多样性与迄今为止所研究的所有蓝细菌所表现出的多样性相似。我们通过在富集前稀释接种物获得了两种主要蓝细菌物种的无菌分离物。一种分离物具有我们尚未通过克隆检测到的16S rRNA序列。另一种具有与我们在此报告的新克隆序列相同的16S rRNA序列。这是第一个其16S rRNA序列已通过克隆在该微生物垫系统中被检测到的培养物种。我们推断该群落内的生物多样性与功能群结构有关。

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