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利用焦磷酸测序技术揭示深部矿井微生物生态。

Using pyrosequencing to shed light on deep mine microbial ecology.

作者信息

Edwards Robert A, Rodriguez-Brito Beltran, Wegley Linda, Haynes Matthew, Breitbart Mya, Peterson Dean M, Saar Martin O, Alexander Scott, Alexander E Calvin, Rohwer Forest

机构信息

Department of Biology, San Diego State University, San Diego, USA.

出版信息

BMC Genomics. 2006 Mar 20;7:57. doi: 10.1186/1471-2164-7-57.

Abstract

BACKGROUND

Contrasting biological, chemical and hydrogeological analyses highlights the fundamental processes that shape different environments. Generating and interpreting the biological sequence data was a costly and time-consuming process in defining an environment. Here we have used pyrosequencing, a rapid and relatively inexpensive sequencing technology, to generate environmental genome sequences from two sites in the Soudan Mine, Minnesota, USA. These sites were adjacent to each other, but differed significantly in chemistry and hydrogeology.

RESULTS

Comparisons of the microbes and the subsystems identified in the two samples highlighted important differences in metabolic potential in each environment. The microbes were performing distinct biochemistry on the available substrates, and subsystems such as carbon utilization, iron acquisition mechanisms, nitrogen assimilation, and respiratory pathways separated the two communities. Although the correlation between much of the microbial metabolism occurring and the geochemical conditions from which the samples were isolated could be explained, the reason for the presence of many pathways in these environments remains to be determined. Despite being physically close, these two communities were markedly different from each other. In addition, the communities were also completely different from other microbial communities sequenced to date.

CONCLUSION

We anticipate that pyrosequencing will be widely used to sequence environmental samples because of the speed, cost, and technical advantages. Furthermore, subsystem comparisons rapidly identify the important metabolisms employed by the microbes in different environments.

摘要

背景

生物学、化学和水文地质分析的对比突出了塑造不同环境的基本过程。在定义一个环境时,生成和解释生物序列数据是一个成本高昂且耗时的过程。在这里,我们使用了焦磷酸测序技术,这是一种快速且相对廉价的测序技术,从美国明尼苏达州苏丹矿的两个地点生成环境基因组序列。这两个地点彼此相邻,但在化学和水文地质方面有显著差异。

结果

对两个样本中鉴定出的微生物和子系统进行比较,突出了每个环境中代谢潜力的重要差异。微生物在可用底物上进行着不同的生物化学过程,碳利用、铁获取机制、氮同化和呼吸途径等子系统将两个群落区分开来。虽然可以解释所发生的许多微生物代谢与分离样本的地球化学条件之间的相关性,但这些环境中许多途径存在的原因仍有待确定。尽管在物理距离上很近,但这两个群落彼此明显不同。此外,这些群落也与迄今为止测序的其他微生物群落完全不同。

结论

我们预计焦磷酸测序将因其速度、成本和技术优势而被广泛用于对环境样本进行测序。此外,子系统比较能快速识别不同环境中微生物所采用的重要代谢过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/249a/1483832/d074b865571d/1471-2164-7-57-1.jpg

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