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蛋白质组学特性揭示了古菌的系统生态聚类。

Proteomic properties reveal phyloecological clusters of Archaea.

机构信息

Mediterranean Institute for Life Sciences, Split, Croatia.

出版信息

PLoS One. 2012;7(10):e48231. doi: 10.1371/journal.pone.0048231. Epub 2012 Oct 25.

Abstract

In this study, we propose a novel way to describe the variety of environmental adaptations of Archaea. We have clustered 57 Archaea by using a non-redundant set of proteomic features, and verified that the clusters correspond to environmental adaptations to the archaeal habitats. The first cluster consists dominantly of hyperthermophiles and hyperthermoacidophilic aerobes. The second cluster joins together halophilic and extremely halophilic Archaea, while the third cluster contains mesophilic (mostly methanogenic) Archaea together with thermoacidophiles. The non-redundant subset of proteomic features was found to consist of five features: the ratio of charged residues to uncharged, average protein size, normalized frequency of beta-sheet, normalized frequency of extended structure and number of hydrogen bond donors. We propose this clustering to be termed phyloecological clustering. This approach could give additional insights into relationships among archaeal species that may be hidden by sole phylogenetic analysis.

摘要

在这项研究中,我们提出了一种新的方法来描述古菌的各种环境适应性。我们使用非冗余的蛋白质组学特征集对 57 种古菌进行了聚类,并验证了这些聚类与古菌栖息地的环境适应性相对应。第一组主要由高温嗜热菌和高温嗜酸性需氧菌组成。第二组将嗜盐菌和极端嗜盐菌聚集在一起,而第三组包含中温(主要是产甲烷菌)古菌和嗜热嗜酸菌。蛋白质组学特征的非冗余子集由五个特征组成:带电荷残基与不带电荷残基的比例、平均蛋白质大小、β-折叠的归一化频率、伸展结构的归一化频率和氢键供体的数量。我们建议将这种聚类称为系统发生生态学聚类。这种方法可以提供更多关于古菌物种之间关系的见解,这些关系可能隐藏在单纯的系统发生分析中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe50/3485053/1f6c31df4818/pone.0048231.g001.jpg

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