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从俄勒冈州火山口湖分离出的具有代表性的淡水浮游细菌。

Representative freshwater bacterioplankton isolated from Crater Lake, Oregon.

作者信息

Page Kathleen A, Connon Stephanie A, Giovannoni Stephen J

机构信息

Department of Biology, Southern Oregon University, Ashland, Oregon 97520, USA.

出版信息

Appl Environ Microbiol. 2004 Nov;70(11):6542-50. doi: 10.1128/AEM.70.11.6542-6550.2004.

Abstract

High-throughput culturing (HTC) methods that rely on dilution to extinction in very-low-nutrient media were used to obtain bacterial isolates from Crater Lake, Oregon. 16S rRNA sequence determination and phylogenetic reconstruction were used to determine the potential ecological significance of isolated bacteria, both in Crater Lake and globally. Fifty-five Crater Lake isolates yielded 16 different 16S rRNA gene sequences. Thirty of 55 (55%) Crater Lake isolates had 16S rRNA gene sequences with 97% or greater similarity to sequences recovered previously from Crater Lake 16S rRNA gene clone libraries. Furthermore, 36 of 55 (65%) Crater Lake isolates were found to be members of widely distributed freshwater groups. These results confirm that HTC is a significant improvement over traditional isolation techniques that tend to enrich for microorganisms that do not predominate in their environment and rarely correlate with 16S rRNA gene clone library sequences. Although all isolates were obtained under dark, heterotrophic growth conditions, 2 of the 16 different groups showed evidence of photosynthetic capability as assessed by the presence of puf operon sequences, suggesting that photoheterotrophy may be a significant process in this oligotrophic, freshwater habitat.

摘要

利用在极低营养培养基中依靠稀释至灭绝的高通量培养(HTC)方法,从俄勒冈州的火山口湖获取细菌分离株。通过16S rRNA序列测定和系统发育重建,来确定分离出的细菌在火山口湖及全球范围内潜在的生态意义。55株来自火山口湖的分离株产生了16种不同的16S rRNA基因序列。55株分离株中有30株(55%)的16S rRNA基因序列与先前从火山口湖16S rRNA基因克隆文库中获得的序列相似度达到97%或更高。此外,55株分离株中有36株(65%)被发现是广泛分布的淡水菌群的成员。这些结果证实,与传统分离技术相比,HTC有显著改进,传统技术往往会富集环境中不占主导地位且很少与16S rRNA基因克隆文库序列相关的微生物。尽管所有分离株都是在黑暗、异养生长条件下获得的,但16个不同组中的2组显示出光合能力的证据,这是通过puf操纵子序列的存在来评估的,这表明光能异养在这个贫营养的淡水栖息地可能是一个重要过程。

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