Phylogenomic and comparative analyses on protein sequences from Halobacteria to identify taxon-specific molecular markers which demarcate different Halobacteriaceae and Haloarculaceae genera.

IF 2 3区 生物学 Q4 MICROBIOLOGY
Radhey S Gupta, Bashudev Rudra, Josh Tony, Sarah Bello
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引用次数: 0

Abstract

Members of the class Halobacteria, due to their widespread distribution in different high-salt environments and potential biotechnological applications, are being discovered at a rapid pace. In recent years, the classification of Halobacteria has undergone major changes, and this class is now divided into 10 families consisting of >77 genera. However, different Halobacteria taxa are presently distinguished based mainly on their branching in phylogenomic trees. No specific characteristics are known which are unique to members of different taxa. To advance our understanding of Halobacteria taxa in this regard, we report here comprehensive phylogenomic and comparative analyses on species from two Halobacteria families, viz. Haloarculaceae and Halobacteriaceae. A phylogenomic tree for 385 Halobacteria species constructed in this work supported the current taxonomy. However, the main objective of this study was to identify molecular markers consisting of conserved signature indels (CSIs) in protein sequences which are uniquely found in the species from the above two families, or those which are specific to their different genera. Our work has identified 105 CSIs in diverse proteins, some of which are specific to Halobacteriaceae, whereas others are exclusively shared characteristics of different Haloarculaceae and Halobacteriaceae genera. Based upon the described CSIs, all genera from these two families containing two or more named species (viz. Halapricum, Halarchaeum, Haloarcula, Halobacterium, Halocatena, Haloglomus, Halomarina, Halomicrobium, Halorarius, Halorhabdus, Halorientalis, Halosegnis, Halosimplex, Halovenus and Natronomonas) can be robustly distinguished from all other Halobacteria genera. The identified CSIs, which are also present in uncharacterized strains of these taxa, provide more definitive means for the demarcation of these Halobacteria taxa and for the identification of new species/strains related to these genera. Because of the predicted functional importance of these CSIs, these taxon-specific molecular markers also provide novel tools for genetic, biochemical and functional studies on these groups of Halobacteria.

对盐杆菌属的蛋白质序列进行系统基因组学和比较分析,以确定区分不同盐杆菌科和盐环科属的分类特异性分子标记。
盐杆菌类的成员,由于其广泛分布在不同的高盐环境和潜在的生物技术应用,正在迅速被发现。近年来,盐杆菌门的分类发生了较大的变化,目前该纲分为10科,共1777属。然而,不同的盐杆菌分类群目前主要是根据它们在系统基因组树上的分支来区分的。目前还不知道不同分类群成员所特有的具体特征。为了加深我们对这方面的认识,我们报道了两个盐杆菌科(Haloarculaceae和Halobacteriaceae)的物种的系统发育和比较分析。本研究构建的385种盐杆菌的系统基因组树支持目前的分类。然而,本研究的主要目的是鉴定由保守特征索引(CSIs)组成的蛋白质序列中的分子标记,这些分子标记是在上述两个科的物种中唯一发现的,或者是它们不同属的特异性分子标记。我们在不同的蛋白质中鉴定了105个CSIs,其中一些是盐杆菌科所特有的,而另一些则是不同的Haloarculaceae和Halobacteriaceae属所特有的。根据所描述的CSIs,这两个科中包含两个或两个以上命名物种的所有属(即Halapricum, Halarchaeum, Haloarcula, Halobacterium, Halocatena, Haloglomus, Halomarina, Halomicrobium, Halorarius, Halorhabdus, Halorientalis, Halosegnis, Halosimplex, Halovenus和Natronomonas)都可以与所有其他盐杆菌属区分。所鉴定的CSIs也存在于这些分类群的未鉴定菌株中,为这些盐杆菌分类群的划分和与这些属相关的新种/菌株的鉴定提供了更明确的手段。由于这些CSIs的预测功能重要性,这些分类群特异性分子标记也为这些盐杆菌群的遗传、生化和功能研究提供了新的工具。
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来源期刊
CiteScore
5.20
自引率
21.40%
发文量
426
审稿时长
1 months
期刊介绍: Published by the Microbiology Society and owned by the International Committee on Systematics of Prokaryotes (ICSP), a committee of the Bacteriology and Applied Microbiology Division of the International Union of Microbiological Societies, International Journal of Systematic and Evolutionary Microbiology is the leading forum for the publication of novel microbial taxa and the ICSP’s official journal of record for prokaryotic names. The journal welcomes high-quality research on all aspects of microbial evolution, phylogenetics and systematics, encouraging submissions on all prokaryotes, yeasts, microfungi, protozoa and microalgae across the full breadth of systematics including: Identification, characterisation and culture preservation Microbial evolution and biodiversity Molecular environmental work with strong taxonomic or evolutionary content Nomenclature Taxonomy and phylogenetics.
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