Molecular Biotechnology, Institute of Biology, Leiden University, PO Box 9505, 2300 RA Leiden, The Netherlands.
Open Biol. 2013 Oct 23;3(10):130073. doi: 10.1098/rsob.130073.
In the era when large whole genome bacterial datasets are generated routinely, rapid and accurate molecular systematics is becoming increasingly important. However, 16S ribosomal RNA sequencing does not always offer sufficient resolution to discriminate between closely related genera. The SsgA-like proteins are developmental regulatory proteins in sporulating actinomycetes, whereby SsgB actively recruits FtsZ during sporulation-specific cell division. Here, we present a novel method to classify actinomycetes, based on the extraordinary way the SsgA and SsgB proteins are conserved. The almost complete conservation of the SsgB amino acid (aa) sequence between members of the same genus and its high divergence between even closely related genera provides high-quality data for the classification of morphologically complex actinomycetes. Our analysis validates Kitasatospora as a sister genus to Streptomyces in the family Streptomycetaceae and suggests that Micromonospora, Salinispora and Verrucosispora may represent different clades of the same genus. It is also apparent that the aa sequence of SsgA is an accurate determinant for the ability of streptomycetes to produce submerged spores, dividing the phylogenetic tree of streptomycetes into liquid-culture sporulation and no liquid-culture sporulation branches. A new phylogenetic tree of industrially relevant actinomycetes is presented and compared with that based on 16S rRNA sequences.
在大规模全基因组细菌数据集常规生成的时代,快速准确的分子系统发育学变得越来越重要。然而,16S 核糖体 RNA 测序并不总是能够提供足够的分辨率来区分密切相关的属。SsgA 样蛋白是产芽孢放线菌中的发育调控蛋白,其中 SsgB 在产芽孢特异性细胞分裂过程中积极招募 FtsZ。在这里,我们提出了一种基于 SsgA 和 SsgB 蛋白高度保守的新方法来对放线菌进行分类。同一属成员之间的 SsgB 氨基酸(aa)序列几乎完全保守,而即使是密切相关的属之间的 SsgB 氨基酸序列也高度分化,这为形态复杂的放线菌的分类提供了高质量的数据。我们的分析验证了 Kitasatospora 在链霉菌科中是链霉菌的姊妹属,并表明 Micromonospora、Salinispora 和 Verrucosispora 可能代表同一属的不同分支。很明显,SsgA 的 aa 序列是链霉菌产生浸没孢子能力的准确决定因素,它将链霉菌的系统发育树分为液体培养产孢和无液体培养产孢分支。本文提出了一个新的工业相关放线菌的系统发育树,并与基于 16S rRNA 序列的系统发育树进行了比较。