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首页> 外文期刊>Scientific reports. >Comparative genomic and functional analyses of four sequenced Bacillus cereus genomes reveal conservation of genes relevant to plant-growth-promoting traits
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Comparative genomic and functional analyses of four sequenced Bacillus cereus genomes reveal conservation of genes relevant to plant-growth-promoting traits

机译:四测序芽孢杆菌基因组的比较基因组和功能分析揭示了与植物生长促进特征相关的基因

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摘要

Some Bacillus strains function as predominant plant-growth-promoting rhizobacteria. Bacillus cereus 905 is a rod-shaped Gram-positive bacterium isolated from wheat rhizosphere and is a rhizobacterium that exhibits significant plant-growth-promoting effects. Species belonging to the genus Bacillus are observed in numerous different habitats. Several papers on B. cereus are related to pathogens that causes food-borne illness and industrial applications. However, genomic analysis of plant-associated B. cereus has yet to be reported. Here, we conducted a genomic analysis comparing strain 905 with three other B. cereus strains and investigate the genomic characteristics and evolution traits of the species in different niches. The genome sizes of four B. cereus strains range from 5.38?M to 6.40?M, and the number of protein-coding genes varies in the four strains. Comparisons of the four B. cereus strains reveal 3,998 core genes. The function of strain-specific genes are related to carbohydrate, amino acid and coenzyme metabolism and transcription. Analysis of single nucleotide polymorphisms (SNPs) indicates local diversification of the four strains. SNPs are unevenly distributed throughout the four genomes, and function interpretation of regions with high SNP density coincides with the function of strain-specific genes. Detailed analysis indicates that certain SNPs contribute to the formation of strain-specific genes. By contrast, genes related to plant-growth-promoting traits are highly conserved. This study shows the genomic differences between four strains from different niches and provides an in-depth understanding of the genome architecture of these species, thus facilitating genetic engineering and agricultural applications in the future.
机译:一些芽孢杆菌菌株用作主要的植物生长促进的根瘤菌。芽孢杆菌905是从小麦根际分离的棒状革兰氏阳性细菌,是具有显着植物生长促进效果的根茎杆菌。在许多不同的栖息地中观察到属于芽孢杆菌属的物种。 B.培养物上的几篇论文与导致食品疾病和工业应用的病原体有关。然而,尚未报告植物相关的B.培训的基因组分析。在这里,我们进行了一种基因组分析,将菌株905与三种其他B.脑菌菌株进行了比较,并研究不同耐药物中物种的基因组特征和演化特征。四种B.培根的基因组大小范围为5.38Ω·m至6.40?m,蛋白质编码基因的数量在四种菌株中变化。四种B.脑菌菌株的比较揭示了3,998个核心基因。应变特异性基因的功能与碳水化合物,氨基酸和辅酶代谢和转录有关。单核苷酸多态性(SNP)分析表明四种菌株的局部多样化。在整个四个基因组中,SNP不均匀分布,并且具有高SNP密度的区域的功能解释与特定于应变基因的功能一致。详细分析表明某些SNP有助于形成应变特异性基因。相比之下,与植物生长促进性状有关的基因是高度保守的。本研究表明,来自不同利基的四种菌株之间的基因组差异,并对这些物种的基因组结构进行了深入的理解,从而促进了未来的基因工程和农业应用。

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