A genomic island in a plant beneficial rhizobacterium encodes novel antimicrobial fatty acids and a self‐protection shield to enhance its competition

根际细菌 生物 细菌 根际 生物化学 抗菌剂 脂肪酸 底漆(化妆品) 微生物学 基因 遗传学 有机化学 化学
作者
Dandan Wang,Zhihui Xu,Guishan Zhang,Liming Xia,Xiaoyan Dong,Qing Li,Mark R. Liles,Jiahui Shao,Qirong Shen,Ruifu Zhang
出处
期刊:Environmental Microbiology [Wiley]
卷期号:21 (9): 3455-3471 被引量:36
标识
DOI:10.1111/1462-2920.14683
摘要

Rhizobacteria devote a relatively large percentage of their genomes to encode bioactive natural products that are important for competition in the rhizosphere. In this study, a plant beneficial rhizobacterium Bacillus velezensis SQR9 was discovered to produce novel antibacterial fatty acids, Bacillunoic acids, which are encoded on a genomic island (GI). This GI contains a hybrid type I fatty acid synthase (FAS)-polyketide synthase (PKS) system and an ABC transporter. The FAS was predicted to synthesize a primer that was transferred to the PKS to synthesize Bacillunoic acids. The synthesized Bacillunoic acids inhibit the growth of diverse bacteria, with the strongest activity against closely related Bacillus strains, the ABC transporter exported the toxic Bacillunoic acids upon their induction for protecting the producing strain. The inhibition of other Bacillus strains by Bacillunoic acids extended the antimicrobial spectrum of SQR9 and enhanced its competition with closely related root-associated bacteria. So, through the obtaining of this GI by horizontal gene transfer, strain SQR9 not only acquired a competitive weapon but also acquired a self-protecting shield, which increased its competition with other rhizobacteria.
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