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PhyloPhlAn 是一种用于改进微生物系统发育和分类位置的新方法。

PhyloPhlAn is a new method for improved phylogenetic and taxonomic placement of microbes.

机构信息

Biostatistics Department, Harvard School of Public Health, Boston, Massachusetts 02115, USA.

出版信息

Nat Commun. 2013;4:2304. doi: 10.1038/ncomms3304.

Abstract

New microbial genomes are constantly being sequenced, and it is crucial to accurately determine their taxonomic identities and evolutionary relationships. Here we report PhyloPhlAn, a new method to assign microbial phylogeny and putative taxonomy using >400 proteins optimized from among 3,737 genomes. This method measures the sequence diversity of all clades, classifies genomes from deep-branching candidate divisions through closely related subspecies and improves consistency between phylogenetic and taxonomic groupings. PhyloPhlAn improved taxonomic accuracy for existing and newly sequenced genomes, detecting 157 erroneous labels, correcting 46 and placing or refining 130 new genomes. We provide examples of accurate classifications from subspecies (Sulfolobus spp.) to phyla, and of preliminary rooting of deep-branching candidate divisions, including consistent statistical support for Caldiserica (formerly candidate division OP5). PhyloPhlAn will thus be useful for both phylogenetic assessment and taxonomic quality control of newly sequenced genomes. The final phylogenies, conserved protein sequences and open-source implementation are available online.

摘要

新的微生物基因组不断被测序,准确确定它们的分类身份和进化关系至关重要。在这里,我们报告了 PhyloPhlAn,这是一种使用从 3737 个基因组中优化的 >400 种蛋白质来分配微生物系统发育和假定分类群的新方法。该方法测量所有进化枝的序列多样性,通过与密切相关的亚种区分深分枝候选划分的基因组,并提高系统发育和分类群之间的一致性。PhyloPhlAn 提高了现有和新测序基因组的分类准确性,检测到 157 个错误标签,纠正了 46 个,并确定或细化了 130 个新基因组。我们提供了从亚种(Sulfolobus spp.)到门的准确分类的示例,以及深分枝候选划分的初步生根,包括对 Caldiserica(以前的候选分类 OP5)的一致统计支持。因此,PhyloPhlAn 将有助于对新测序的基因组进行系统发育评估和分类质量控制。最终的系统发育树、保守蛋白质序列和开源实现可在线获取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4fc/3760377/28379d278f04/nihms505620f1.jpg

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