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首页> 外文期刊>BMC Genomics >Comparative genomic analysis of Bacillus paralicheniformis MDJK30 with its closely related species reveals an evolutionary relationship between B. paralicheniformis and B. licheniformis
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Comparative genomic analysis of Bacillus paralicheniformis MDJK30 with its closely related species reveals an evolutionary relationship between B. paralicheniformis and B. licheniformis

机译:Bacillus parabericheniformis MDJK30的比较基因组分析及其密切相关的物种揭示了B.前疟原虫和B. licheniformis之间的进化关系

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Members of the genus Bacillus are important plant growth-promoting rhizobacteria that serve as biocontrol agents. Bacillus paralicheniformis MDJK30 is a PGPR isolated from the peony rhizosphere and can suppress plant-pathogenic bacteria and fungi. To further uncover the genetic mechanism of the plant growth-promoting traits of MDJK30 and its closely related strains, we used comparative genomics to provide insights into the genetic diversity and evolutionary relationship between B. paralicheniformis and B. licheniformis. A comparative genomics analysis based on B. paralicheniformis MDJK30 and 55 other previously reported Bacillus strains was performed. The evolutionary position of MDJK30 and the evolutionary relationship between B. paralicheniformis and B. licheniformis were evaluated by studying the phylogeny of the core genomes, a population structure analysis and ANI results. Comparative genomic analysis revealed various features of B. paralicheniformis that contribute to its commensal lifestyle in the rhizosphere, including an opening pan genome, a diversity of transport and the metabolism of the carbohydrates and amino acids. There are notable differences in the numbers and locations of the insertion sequences, prophages, genomic islands and secondary metabolic synthase operons between B. paralicheniformis and B. licheniformis. In particular, we found most gene clusters of Fengycin, Bacitracin and Lantipeptide were only present in B. paralicheniformis and were obtained by horizontal gene transfer (HGT), and these clusters may be used as genetic markers for distinguishing B. paralicheniformis and B. licheniformis. This study reveals that MDJK30 and the other strains of lineage paralicheniformis present plant growth-promoting traits at the genetic level and can be developed and commercially formulated in agriculture as PGPR. Core genome phylogenies and population structure analysis has proven to be a powerful tool for differentiating B. paralicheniformis and B. licheniformis. Comparative genomic analyses illustrate the genetic differences between the paralicheniformis-licheniformis group with respect to rhizosphere adaptation.
机译:芽孢杆菌属的成员是重要的植物生长增长,促进作为生物控制剂的根瘤菌。 Bacillus paraLirocheniformis MDJK30是与牡丹根际隔离的PGPR,可以抑制植物致病菌和真菌。为了进一步揭示植物生长促进MDJK30及其密切相关菌株的遗传机制,我们使用了对比基因组学,为B.Paraliheniformis和B.Hisheniformis之间的遗传多样性和进化关系提供了洞察力。基于B.Paraliocheniformis MDJK30和55其他先前报告的芽孢杆菌菌株的对比基因组学分析。通过研究核心基因组的系统发育,群体结构分析和ANI结果,评估MDJK30的进化位置和B.Paraliocheniformis和B.Licheniformis的进化关系。比较基因组分析揭示了B.Paraliocheniformis的各种特征,其有助于其在根际的非共生生活方式,包括开口PAN基因组,运输多样性和碳水化合物和氨基酸的代谢。插入序列的数量和位置存在显着的差异,B.前核状is和b. licheniformis之间的插入序列,血管,基因组岛和二次代谢合成酶操纵子。特别地,我们发现最泛霉素,甲硝肽和喇叭肽的大多数基因簇仅存在于B.前亚洛尼尼斯,并且通过水平基因转移(HGT)获得,并且这些簇可用作区分B.前亚洛尼尼斯和B.Hisheniformis的遗传标记。本研究表明,MDJK30和其他谱系血泊菌株在遗传水平上存在植物生长促进性状,并且可以在农业中开发和商业化为PGPR。核心基因组和群体结构分析已被证明是差异化B.前亚洛尼尼斯和B.Licheniformis的强大工具。比较基因组分析说明了帕拉伯均匀 - 嗜睡血管基团相对于根际适应的遗传差异。

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