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推测124B02质粒pMF1由另一物种的染色体片段进化而来。

Putative evolution of 124B02 plasmid pMF1 from a chromosomal segment in another species.

作者信息

Jain Shruti, Sharma Gaurav

机构信息

Institute of Bioinformatics and Applied Biotechnology (IBAB), Bangalore, Karnataka, India.

Department of Biotechnology, Indian Institute of Technology Hyderabad, Sangareddy, Telangana, India.

出版信息

Microbiol Spectr. 2025 Jan 7;13(1):e0120624. doi: 10.1128/spectrum.01206-24. Epub 2024 Nov 15.

Abstract

Myxobacteria or order Myxococcales (old nomenclature) or phylum Myxococcota (new terminology) are fascinating organisms well known for their diverse peculiar physiological, taxonomic, and genomic properties. Researchers have long sought to identify plasmids within these organisms, yet thus far, only two organisms from different families have been found to harbor a plasmid. This study delves into the putative evolution of one of these plasmids, i.e., pMF1 present in 124B02 in the suborder Cystobacterineae and family Myxococcaceae. Here, we first reannotated the pMF1 plasmid genome sequence and identified two additional open reading frames or putative genes which were not annotated until now. We further reported that all pMF1 plasmid genes depict homology with CYD1 draft genome (contig 28) and a chromosomal segment of DSM14675 in a syntenic manner, implying the presence of plasmid-like structure in CYD1, integrated into its chromosome. To comprehend the relationship among these three species, we conducted phylogenetic analyses using 16S and concatenated housekeeping genes and genome-to-genome distance calculator (GGDC) analysis, which confirmed that CYD1 is a distinct and novel species within the genus . Overall, this comparative genomic study sheds light on the putative emergence of the pMF1 plasmid from a common ancestor of closely related yet distinct species, CYD1, possibly through the partition from its chromosome as a segment.IMPORTANCEMyxobacteria are not well known to have plasmids. Until now, only two organisms have been shown to have plasmids, raising a pertinent question about how these plasmids evolved randomly within the phylum Myxococcota. The study presented in this manuscript delves into the emergence of the pMF1 plasmid found in 124B02, a member of the suborder Cystobacterineae and family Myxococcaceae. Our research addresses this intriguing topic of plasmid identification and evolution within myxobacteria, which are a group of fascinating organisms that have garnered significant interest due to their diverse physiological, taxonomic, and genomic properties.

摘要

黏细菌,即黏球菌目(旧分类法)或黏球菌门(新术语),是一类迷人的生物,因其多样独特的生理、分类和基因组特性而闻名。长期以来,研究人员一直试图在这些生物中鉴定出质粒,但迄今为止,仅发现来自不同科的两种生物含有质粒。本研究深入探讨了其中一种质粒的假定进化过程,即存在于囊杆菌亚目黏球菌科124B02中的pMF1质粒。在此,我们首先重新注释了pMF1质粒基因组序列,并鉴定出另外两个此前未注释的开放阅读框或假定基因。我们进一步报道,所有pMF1质粒基因与CYD1草图基因组(重叠群28)和DSM14675的一个染色体片段以共线性方式呈现同源性,这意味着CYD1中存在整合到其染色体中的类质粒结构。为了理解这三个物种之间的关系,我们使用16S和串联管家基因进行了系统发育分析,并进行了基因组到基因组距离计算器(GGDC)分析,结果证实CYD1是该属内一个独特的新物种。总体而言,这项比较基因组研究揭示了pMF1质粒可能从密切相关但又不同的物种CYD1的共同祖先中通过作为一个片段从其染色体上分离出来而假定出现的过程。

重要性

黏细菌是否含有质粒并不为人熟知。到目前为止,仅显示有两种生物含有质粒,这就引发了一个相关问题,即这些质粒如何在黏球菌门中随机进化。本手稿中呈现的研究深入探讨了在囊杆菌亚目黏球菌科成员124B02中发现的pMF1质粒的出现情况。我们的研究解决了黏细菌中质粒鉴定和进化这个有趣的话题,黏细菌是一类迷人的生物,因其多样的生理、分类和基因组特性而备受关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cd7/11705834/b473c4bfb2f0/spectrum.01206-24.f001.jpg

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