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Paenarthrobacter nicotinovorans ATCC 49919 基因组的特征描述及几株具有高度同源性 nic 基因簇菌株的鉴定。

Characterisation of the Paenarthrobacter nicotinovorans ATCC 49919 genome and identification of several strains harbouring a highly syntenic nic-genes cluster.

机构信息

Faculty of Biology, Alexandru Ioan Cuza University of Iași, Iași, Romania.

Laboratory of Human Molecular Genetics, Faculty of Medicine of Sfax, University of Sfax, Sfax, Tunisia.

出版信息

BMC Genomics. 2023 Sep 11;24(1):536. doi: 10.1186/s12864-023-09644-3.

Abstract

BACKGROUND

Paenarthrobacter nicotinovorans ATCC 49919 uses the pyridine-pathway to degrade nicotine and could provide a renewable source of precursors from nicotine-containing waste as well as a model for studying the molecular evolution of catabolic pathways and their spread by horizontal gene transfer via soil bacterial plasmids.

RESULTS

In the present study, the strain was sequenced using the Illumina NovaSeq 6000 and Oxford Nanopore Technology (ONT) MinION platforms. Following hybrid assembly with Unicycler, the complete genome sequence of the strain was obtained and used as reference for whole-genome-based phylogeny analyses. A total of 64 related genomes were analysed; five Arthrobacter strains showed both digital DNA-DNA hybridization and average nucleotide identity values over the species threshold when compared to P. nicotinovorans ATCC 49919. Five plasmids and two contigs belonging to Arthrobacter and Paenarthrobacter strains were shown to be virtually identical with the pAO1 plasmid of Paenarthrobacter nicotinovorans ATCC 49919. Moreover, a highly syntenic nic-genes cluster was identified on five plasmids, one contig and three chromosomes. The nic-genes cluster contains two major locally collinear blocks that appear to form a putative catabolic transposon. Although the origins of the nic-genes cluster and the putative transposon still elude us, we hypothesise here that the ATCC 49919 strain most probably evolved from Paenarthrobacter sp. YJN-D or a very closely related strain by acquiring the pAO1 megaplasmid and the nicotine degradation pathway.

CONCLUSIONS

The data presented here offers another snapshot into the evolution of plasmids harboured by Arthrobacter and Paenarthrobacter species and their role in the spread of metabolic traits by horizontal gene transfer among related soil bacteria.

摘要

背景

节杆菌属 Paenarthrobacter nicotinovorans ATCC 49919 使用吡啶途径降解尼古丁,可从含尼古丁的废物中提供可再生的前体来源,并可作为研究代谢途径的分子进化及其通过土壤细菌质粒进行水平基因转移传播的模型。

结果

本研究使用 Illumina NovaSeq 6000 和 Oxford Nanopore Technology (ONT) MinION 平台对该菌株进行测序。经过 Unicycler 混合组装,获得了该菌株的完整基因组序列,并将其用作全基因组系统发育分析的参考。共分析了 64 个相关基因组;与 P. nicotinovorans ATCC 49919 相比,5 株节杆菌属菌株的数字 DNA-DNA 杂交和平均核苷酸同一性值均超过了种的阈值。结果表明,属于节杆菌属和节杆菌属的 5 个质粒和 2 个序列与 Paenarthrobacter nicotinovorans ATCC 49919 的 pAO1 质粒几乎完全相同。此外,在 5 个质粒、1 个序列和 3 个染色体上鉴定到高度同线性的 nic 基因簇。nic 基因簇包含两个主要的局部共线性块,似乎形成了一个假定的代谢转座子。虽然 nic 基因簇和假定转座子的起源仍然未知,但我们在这里假设,ATCC 49919 菌株最有可能通过获得 pAO1 巨型质粒和尼古丁降解途径,从 Paenarthrobacter sp. YJN-D 或非常密切相关的菌株中进化而来。

结论

本研究提供了另一个关于 Arthrobacter 和 Paenarthrobacter 属物种中携带的质粒的进化以及它们在通过水平基因转移在相关土壤细菌中传播代谢特征方面的作用的快照。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83bf/10494377/263c75e78776/12864_2023_9644_Fig1_HTML.jpg

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