Xinjiang Key Laboratory of Special Species Conservation and Regulatory Biology, College of Life Science, Xinjiang Normal University, Urumqi, 830054, China.
Beijing Key Laboratory of Gene Resource and Molecular Development, College of Life Science, Beijing Normal University, Beijing, 100875, China.
Arch Microbiol. 2021 May;203(4):1565-1575. doi: 10.1007/s00203-020-02149-7. Epub 2021 Jan 5.
In the present study, antagonistic activity of bacterial strain BS-Z15, was evaluated against Verticillium dahlia. The fermented broth of BS-Z15 inhibited the growth of Verticillium dahliae. The genome of strain BS-Z15 had a total size of 4,068,702 base pairs and contained 4318 genes, of which 4196 are coding sequences and 122 are non-coding RNA. Among these genes, nine genomic islands, 86 tRNAs, 13 sRNAs, and one prophage was determined. With the help of annotation databases, most unigene functions were identified. At the same time, genomic comparison between BS-Z15 and 12 Bacillus members showed that the genes of BS-Z15 were closely related to the Bacillus group, and were conserved between the two groups, including most of the genes associated with fungal antagonism. BS-Z15 contains genes involved in a variety of antagonistic mechanisms, including genes encoding or synthesizing mycosubtilin, chitinases (but not CHIA and CHIB), glycoside hydrolases, iron nutrients, and antibiosis. However, it only contained the complete mycosubtilin- and bacilibactin-related operators in the reported main antifungal gene cluster of B. subtilis. Mycosubtilin and bacilibactin may be the main active antifungal substance. Besides, some genes could encode products related to biofilm production, which may be related to the colonization ability of the strain in plant rhizospheres. The complete genome of B. subtilis BS-Z15 provided new insights into the potential metabolites it produces related to its biocontrol activity.
在本研究中,评估了细菌菌株 BS-Z15 对黄萎病菌的拮抗活性。BS-Z15 的发酵液抑制了黄萎病菌的生长。BS-Z15 的基因组总大小为 4068702 个碱基对,包含 4318 个基因,其中 4196 个是编码序列,122 个是非编码 RNA。在这些基因中,确定了 9 个基因组岛、86 个 tRNA、13 个 sRNA 和 1 个噬菌体。在注释数据库的帮助下,确定了大多数基因的功能。同时,BS-Z15 与 12 个芽孢杆菌成员之间的基因组比较表明,BS-Z15 的基因与芽孢杆菌群密切相关,并且在两组之间保守,包括与真菌拮抗作用相关的大多数基因。BS-Z15 包含多种拮抗机制相关的基因,包括编码或合成蕈菌素、几丁质酶(但不包括 CHIA 和 CHIB)、糖苷水解酶、铁营养物质和抗生素的基因。然而,它只在报道的枯草芽孢杆菌主要抗真菌基因簇中包含完整的蕈菌素和 bacilibactin 相关操纵子。蕈菌素和 bacilibactin 可能是主要的活性抗真菌物质。此外,一些基因可以编码与生物膜产生相关的产物,这可能与菌株在植物根际中的定殖能力有关。BS-Z15 的完整基因组为其生物防治活性相关的潜在代谢产物提供了新的见解。