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基于管家基因测序的气单胞菌属系统发育分析及其对系统学的影响。

Phylogenetic analyses of the genus Aeromonas based on housekeeping gene sequencing and its influence on systematics.

机构信息

Genetic Analysis Strategies S.L., CEEI, Elche, Alicante, Spain.

Area de Microbiología, EPSO, Universidad Miguel Hernández, Orihuela, Alicante, Spain.

出版信息

J Appl Microbiol. 2018 Sep;125(3):622-631. doi: 10.1111/jam.13887. Epub 2018 Jun 27.

Abstract

The phylogenies derived from housekeeping gene sequence alignments, although mere evolutionary hypotheses, have increased our knowledge about the Aeromonas genetic diversity, providing a robust species delineation framework invaluable for reliable, easy and fast species identification. Previous classifications of Aeromonas, have been fully surpassed by recently developed phylogenetic (natural) classification obtained from the analysis of so-called 'molecular chronometers'. Despite ribosomal RNAs cannot split all known Aeromonas species, the conserved nature of 16S rRNA offers reliable alignments containing mosaics of sequence signatures which may serve as targets of genus-specific oligonucleotides for subsequent identification/detection tests in samples without culturing. On the contrary, some housekeeping genes coding for proteins show a much better chronometric capacity to discriminate highly related strains. Although both, species and loci, do not all evolve at exactly the same rate, published Aeromonas phylogenies were congruent to each other, indicating that, phylogenetic markers are synchronized and a concatenated multigene phylogeny, may be 'the mirror' of the entire genomic relationships. Thanks to MLPA approaches, the discovery of new Aeromonas species and strains of rarely isolated species is today more frequent and, consequently, should be extensively promoted for isolate screening and species identification. Although, accumulated data still should be carefully catalogued to inherit a reliable database.

摘要

从管家基因序列比对得出的系统发育关系,虽然仅仅是进化假设,但增加了我们对气单胞菌遗传多样性的了解,为可靠、简便和快速的物种鉴定提供了有价值的稳健物种划分框架。气单胞菌的先前分类已被最近从所谓的“分子钟”分析中获得的基于系统发育(自然)的分类完全超越。尽管核糖体 RNA 不能将所有已知的气单胞菌物种分开,但 16S rRNA 的保守性质提供了可靠的比对,其中包含可能作为属特异性寡核苷酸的靶序列的马赛克,用于随后在没有培养的样品中进行鉴定/检测测试。相反,一些编码蛋白质的管家基因显示出更好的计时能力,可以区分高度相关的菌株。虽然物种和基因座都不会以完全相同的速度进化,但已发表的气单胞菌系统发育关系彼此一致,表明系统发育标记是同步的,并且串联的多基因系统发育可能是整个基因组关系的“镜子”。由于 MLPA 方法的出现,今天发现了更多的新气单胞菌物种和稀有分离物种的菌株,因此应该更广泛地促进用于分离筛选和物种鉴定。尽管如此,累积的数据仍应仔细编目,以继承可靠的数据库。

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