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基因组挖掘和比较基因组分析揭示了抗菌菌株 SF-4 中特定生态位的基因组扩张。

Genome Mining and Comparative Genome Analysis Revealed Niche-Specific Genome Expansion in Antibacterial Strain SF-4.

机构信息

Department of Industrial Biotechnology, Atta-Ur-Rahman School of Applied Biosciences (ASAB), National University of Sciences and Technology (NUST), H-12 Islamabad 44000, Pakistan.

Institute for Biological Interfaces 5 (IBG-5), Karlsruhe Institute of Technology (KIT), 76344 Eggenstein-Leopoldshafen, Germany.

出版信息

Genes (Basel). 2021 Jul 12;12(7):1060. doi: 10.3390/genes12071060.

Abstract

The present study reports the isolation of antibacterial exhibiting () SF-4 from soil field. The genome of this strain SF-4 was sequenced and analyzed to acquire in-depth genomic level insight related to functional diversity, evolutionary history, and biosynthetic potential. The genome of the strain SF-4 harbor 12 Biosynthetic Gene Clusters (BGCs) including four Non-ribosomal peptide synthetases (NRPSs), two terpenes, and one each of Type III polyketide synthases (PKSs), hybrid (NRPS/PKS), lipopeptide, β-lactone, and bacteriocin clusters. Plant growth-promoting genes associated with de-nitrification, iron acquisition, phosphate solubilization, and nitrogen metabolism were also observed in the genome. Furthermore, all the available complete genomes of strains were used to highlight species boundaries and diverse niche adaptation strategies. Phylogenetic analyses revealed local diversification and indicate that strain SF-4 is a sister group to SAFR-032 and 150a. Pan-genome analyses of 12 targeted strains showed regions of genome plasticity which regulate function of these strains and proposed direct strain adaptations to specific habitats. The unique genome pool carries genes mostly associated with "biosynthesis of secondary metabolites, transport, and catabolism" (Q), "replication, recombination and repair" (L), and "unknown function" (S) clusters of orthologous groups (COG) categories. Moreover, a total of 952 unique genes and 168 exclusively absent genes were prioritized across the 12 genomes. While newly sequenced SF-4 genome consists of 520 accessory, 59 unique, and seven exclusively absent genes. The current study demonstrates genomic differences among 12 strains and offers comprehensive knowledge of the respective genome architecture which may assist in the agronomic application of this strain in future.

摘要

本研究报告了从土壤场中分离出具有抗菌活性的 () SF-4。对该菌株 SF-4 的基因组进行了测序和分析,以深入了解与功能多样性、进化历史和生物合成潜力相关的基因组水平信息。该菌株 SF-4 的基因组包含 12 个生物合成基因簇 (BGCs),包括 4 个非核糖体肽合酶 (NRPSs)、2 个萜烯和 1 个 III 型聚酮合酶 (PKSs)、杂合 (NRPS/PKS)、脂肽、β-内酰胺和细菌素簇。在基因组中还观察到与脱氮、铁获取、磷酸盐溶解和氮代谢相关的植物生长促进基因。此外,还利用所有可用的 菌株的完整基因组来突出物种边界和多样化的生态位适应策略。系统发育分析显示局部多样化,并表明菌株 SF-4 是 SAFR-032 和 150a 的姐妹群。对 12 个靶向菌株的泛基因组分析显示,基因组可塑性区域调节这些菌株的功能,并提出了这些菌株对特定生境的直接适应。独特的基因组库携带与“次生代谢物生物合成、运输和分解代谢”(Q)、“复制、重组和修复”(L)和“未知功能”(S)的同源群 (COG) 类别中大多数相关的基因。此外,在 12 个基因组中总共确定了 952 个独特基因和 168 个特有缺失基因。而新测序的 SF-4 基因组包含 520 个辅助、59 个独特和 7 个特有缺失基因。本研究表明了 12 个 菌株之间的基因组差异,并提供了各自基因组结构的全面知识,这可能有助于该菌株在未来的农业应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed7e/8303946/bb843ff1df23/genes-12-01060-g001.jpg

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