Phylogenomic and molecular marker based studies to clarify the evolutionary relationships amongst Anoxybacillus species and demarcation of the family Anoxybacillaceae and some of its constituent genera.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Isha Patel, Sarah Bello, Radhey S Gupta
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引用次数: 0

Abstract

The family Anoxybacillaceae was recently proposed encompassing the genera Anoxybacillus, Geobacillus, Parageobacillus, Saccharococcus and Thermolongibacillus. Of these genera, Anoxybacillus contains >50% of the Anoxybacillaceae species. However, Anoxybacillus species form multiple unrelated clades in phylogenetic trees and their evolutionary relationships are unclear. To clarify the evolutionary relationships of Anoxybacillus and other Anoxybacillaceae species, detailed phylogenomic and comparative analyses were conducted on 38 Anoxybacillaceae species with available genomes. In a phylogenomic tree based on 1148 core proteins, all Anoxybacillus, Geobacillus, Parageobacillus, Saccharococcus and Thermolongibacillus species, excepting Anoxybacillus sediminis, formed a strongly supported clade representing the family Anoxybacillaceae. Five conserved signature indels (CSIs) reported here are also uniquely found in these species, providing robust means for the demarcation of family Anoxybacillaceae in molecular terms. In our phylogenomic tree and in the Genomic Taxonomy Database, Anoxybacillus species formed four distinct clades designated as Anoxybacillus sensu stricto (containing the type species A. pushchinoensis), Anoxybacillus_A, Anoxybacillus_B and Anoxybacillus_C. Our analyses have identified 17 novel CSIs which offer means to reliably distinguish species from these clades based upon multiple uniquely shared molecular characteristics. Additionally, we have identified three and seven CSIs specific for the genera Geobacillus and Brevibacillus, respectively. All seven Brevibacillus-specific CSIs are also shared by Anoxybacillus sediminis, which branches reliably with this genus. Based on the strong phylogenetic and molecular evidence presented here, we are proposing that the genus Anoxybacillus should be restricted to only the species from Anoxybacillus sensu stricto clade, whereas the species from Anoxybacillus_A, Anoxybacillus_B, and Anoxybacillus_C clades should be transferred into three novel genera Anoxybacteroides gen. nov., Paranoxybacillus gen. nov. and Thermaerobacillus gen. nov., respectively. Additionally, we are also proposing the transfer of Anoxybacillus sediminis to the genus Brevibacillus. The proposed changes, which reliably depict the evolutionary relationships among Anoxybacillaceae species, should be helpful in the studies of these organisms.

基于系统发生组和分子标记的研究,以明确 Anoxybacillus 物种之间的进化关系,并划分 Anoxybacillaceae 科及其一些组成属。
最近提出的 Anoxybacillaceae 科包括 Anoxybacillus 属、Geobacillus 属、Parageobacillus 属、Saccharococcus 属和 Thermolongibacillus 属。在这些属中,Anoxybacillus 含有 Anoxybacillaceae 物种的 50%以上。然而,Anoxybacillus 的物种在系统发生树中形成了多个不相关的支系,它们之间的进化关系并不清楚。为了厘清 Anoxybacillus 和其他 Anoxybacillaceae 物种的进化关系,研究人员对 38 个有基因组的 Anoxybacillaceae 物种进行了详细的系统发生组学分析和比较分析。在基于 1148 个核心蛋白质的系统发生树中,除沉积嗜盐菌外,所有的嗜盐菌、地球菌、副地球菌、糖球菌和热龙杆菌都形成了一个代表嗜盐菌科的强支持支系。本文报告的五个保守的特征性嵌合(CSIs)在这些物种中也是独一无二的,为从分子角度划分 Anoxybacillaceae 科提供了强有力的方法。在我们的系统发生树和基因组分类数据库中,Anoxybacillus 物种形成了四个不同的支系,即严格意义上的 Anoxybacillus(包含模式种 A. pushchinoensis)、Anoxybacillus_A、Anoxybacillus_B 和 Anoxybacillus_C。我们的分析发现了 17 个新的 CSIs,这些 CSIs 可根据多个独特的分子特征可靠地区分这些支系中的物种。此外,我们还发现了 Geobacillus 属和 Brevibacillus 属分别特有的 3 个和 7 个 CSIs。所有七个 Brevibacillus 特有的 CSIs 也被 Anoxybacillus sediminis 共享,该属与 Brevibacillus 的分支关系可靠。基于本文提出的强有力的系统发育和分子证据,我们建议 Anoxybacillus 属应仅限于 Anoxybacillus sensu stricto 支系中的物种,而 Anoxybacillus_A、Anoxybacillus_B 和 Anoxybacillus_C 支系中的物种则应分别转入三个新属 Anoxybacteroides gen.nov.、Paranoxybacillus gen.此外,我们还建议将 Anoxybacillus sediminis 转入 Brevibacillus 属。所建议的更改可靠地描述了 Anoxybacillaceae 物种之间的进化关系,应有助于对这些生物的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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