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质粒在……中编码特定生态位的性状。 (原句中“in”后面缺少具体内容)

Plasmids encode niche-specific traits in .

作者信息

Davray Dimple, Deo Dipti, Kulkarni Ram

机构信息

Symbiosis School of Biological Sciences, Symbiosis International (Deemed University), Lavale, Pune 412115, India.

出版信息

Microb Genom. 2021 Mar;7(3). doi: 10.1099/mgen.0.000472. Epub 2020 Nov 9.

Abstract

Species belonging to the family are found in highly diverse environments and play an important role in fermented foods and probiotic products. Many of these species have been individually reported to harbour plasmids that encode important genes. In this study, we performed comparative genomic analysis of publicly available data for 512 plasmids from 282 strains represented by 51 species of this family and correlated the genomic features of plasmids with the ecological niches in which these species are found. Two-thirds of the species had at least one plasmid-harbouring strain. Plasmid abundance and GC content were significantly lower in vertebrate-adapted species as compared to nomadic and free-living species. Hierarchical clustering highlighted the distinct nature of plasmids from the nomadic and free-living species than those from the vertebrate-adapted species. EggNOG-assisted functional annotation revealed that genes associated with transposition, conjugation, DNA repair and recombination, exopolysaccharide production, metal ion transport, toxin-antitoxin system, and stress tolerance were significantly enriched on the plasmids of the nomadic and in some cases nomadic and free-living species. On the other hand, genes related to anaerobic metabolism, ABC transporters and the major facilitator superfamily were overrepresented on the plasmids of the vertebrate-adapted species. These genomic signatures correlate with the comparatively nutrient-depleted, stressful and dynamic environments of nomadic and free-living species and nutrient-rich and anaerobic environments of vertebrate-adapted species. Thus, these results indicate the contribution of the plasmids in the adaptation of lactobacilli to their respective habitats. This study also underlines the potential application of these plasmids in improving the technological and probiotic properties of lactic acid bacteria.

摘要

该科的物种存在于高度多样的环境中,在发酵食品和益生菌产品中发挥着重要作用。许多这类物种已被单独报道含有编码重要基因的质粒。在本研究中,我们对该科51个物种代表的282株菌株的512个质粒的公开可用数据进行了比较基因组分析,并将质粒的基因组特征与发现这些物种的生态位相关联。三分之二的物种至少有一个携带质粒的菌株。与游牧和自由生活的物种相比,适应脊椎动物的物种中的质粒丰度和GC含量显著更低。层次聚类突出了游牧和自由生活物种的质粒与适应脊椎动物物种的质粒的不同性质。EggNOG辅助功能注释显示,与转座、接合、DNA修复和重组、胞外多糖产生、金属离子转运、毒素-抗毒素系统和应激耐受性相关的基因在游牧物种以及在某些情况下游牧和自由生活物种的质粒上显著富集。另一方面,与厌氧代谢、ABC转运蛋白和主要促进剂超家族相关的基因在适应脊椎动物物种的质粒上过度表达。这些基因组特征与游牧和自由生活物种相对营养匮乏、压力大且动态变化的环境以及适应脊椎动物物种营养丰富且厌氧的环境相关。因此,这些结果表明质粒在乳酸菌适应其各自栖息地中的作用。本研究还强调了这些质粒在改善乳酸菌的技术和益生菌特性方面的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bac6/8190607/dbbf6b2292e1/mgen-7-0472-g001.jpg

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