College of Light Industry and Food Engineering, Guangxi University, Nanning, 530004, China.
Key Laboratory of Deep Processing and Safety Control for Specialty Agricultural Products in Guangxi Universities, Education Department of Guangxi Zhuang Autonomous Region, Nanning, China.
Biochem Genet. 2024 Dec;62(6):5073-5091. doi: 10.1007/s10528-024-10710-y. Epub 2024 Feb 22.
Discovering more novel antimicrobial compounds has become a keen research problem. In this study, YA215 genome was sequenced by the Illumina HiSeq + PacBio sequencing platform. Genome assembly was performed by Unicycler software and the gene clusters responsible for secondary metabolite biosynthesis were predicted by antiSMASH. The genome comprised 3976514 bp and had a 46.56% G + C content. 3809 coding DNA sequences, 27 rRNAs, 86 tRNAs genes, and 79 sRNA were predicted. Strain YA215 was re-identified as Bacillus velezensis based on ANI and OrthoANI analysis. In the COG database, 23 functional groups from 3090 annotations were predicted. In the GO database, 2654 annotations were predicted. 2486 KEGG annotations linked 41 metabolic pathways. Glycosyl transferases, polysaccharide lyases, auxiliary activities, glycoside hydrolases, carbohydrate esterases, and carbohydrate-binding modules were predicted among the 127 annotations in the CAZy database. AntiSMASH analysis predicted that B. velezensis YA215 boasted 13 gene clusters involved in synthesis of antimicrobial secondary metabolites including surfactin, fengycin, macrolactin H, bacillaene, difficidin, bacillibactin, bacilysin, and plantazolicin. Three of the gene clusters (gene cluster 5, gene cluster 9, and gene cluster 10) have the potential to synthesize unknown compounds. The research underscore the considerable potential of secondary metabolites, identified in the genomic composition of B. velezensis YA215, as versatile antibacterial agents with a broad spectrum of activity against pathogenic bacteria.
发现更多新型抗菌化合物已成为一个热门研究问题。在本研究中,我们使用 Illumina HiSeq + PacBio 测序平台对 YA215 基因组进行了测序。基因组组装使用 Unicycler 软件完成,通过 antiSMASH 预测了负责次生代谢产物生物合成的基因簇。基因组包含 3976514 bp,GC 含量为 46.56%。预测到 3809 个编码 DNA 序列、27 个 rRNA、86 个 tRNA 基因和 79 个 sRNA。基于 ANI 和 OrthoANI 分析,菌株 YA215 被重新鉴定为解淀粉芽孢杆菌。在 COG 数据库中,从 3090 个注释中预测到 23 个功能组。在 GO 数据库中,预测到 2654 个注释。2486 个 KEGG 注释与 41 个代谢途径相关。在 CAZy 数据库的 127 个注释中预测到糖基转移酶、多糖裂解酶、辅助活性、糖苷水解酶、糖脂酶和碳水化合物结合模块。AntiSMASH 分析预测,解淀粉芽孢杆菌 YA215 拥有 13 个参与合成抗菌次生代谢产物的基因簇,包括表面活性素、丰原素、大环内酯 H、杆菌肽、 difficidin、杆菌素、杆菌肽和 plantazolicin。其中三个基因簇(基因簇 5、基因簇 9 和基因簇 10)具有合成未知化合物的潜力。本研究强调了解淀粉芽孢杆菌 YA215 基因组组成中次生代谢产物的巨大潜力,它们作为广谱抗菌剂具有广泛的抗菌活性。