Genome Sequence Resource of Bacillus mojavensis KRS009, a Rhizospheric Microorganism with Biocontrol Potential

Fu-Hua Zhao, Yue Li, Hong-Yue Qi, Hengguang Zhu, Ran Li, Jiemin Chen, X. Dai, Dan Wang, Dongfei Han, Xiaojun Zhang
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Abstract

Bacillus mojavensis KRS009 was identified as antagonistic strain with strong inhibitory effect to various phytopathogenic fungi. To provide a further insight into its biocontrol mechanisms and ability to improve plant salt tolerance, the high-quality complete genome of KRS009 was sequenced and assembled using PacBio-HiFiReads. KRS009 genome consists of one circular chromosome as 4,089,687 bp with 43.5% GC content. 4,062 open reading frames, of which 3,920 protein-coding genes, 86 transfer RNA, 10 ribosomal RNA, and 26 small RNA were identified in this genome. Among them, genes related to compatible solutes, including treC, galU, proX, and proW, are involved in the synthesis of trehalose, proline, and betaine metabolism, play important role in relieving osmotic stress. In addition, the KRS009 genome contains genes associated with high salinity tolerance, including those responsible for Na+/H+ antiporters, K+ transporters TrkH thiamin phosphate synthase, K+-sensing histidine kinase, aryl-phospho-beta-D-glucosidase, flavoprotein CzcO associated with the cation diffusion facilitator CzcD and chaperonin GroEL. Together, the high-quality genome resource of strain KRS009 would provide molecular basis for further research on its biocontrol and plant salt tolerance mechanisms.
具有生物防治潜力的根瘤微生物莫哈维氏芽孢杆菌(Bacillus mojavensis KRS009)的基因组序列资源
Bacillus mojavensis KRS009 被鉴定为拮抗菌株,对多种植物病原真菌具有很强的抑制作用。为了进一步了解其生物防治机制和提高植物耐盐性的能力,我们使用 PacBio-HiFiReads 对 KRS009 的高质量全基因组进行了测序和组装。KRS009 基因组由一条环状染色体组成,长度为 4,089,687 bp,GC 含量为 43.5%。在该基因组中发现了 4,062 个开放阅读框,其中包括 3,920 个蛋白质编码基因、86 个转移 RNA、10 个核糖体 RNA 和 26 个小 RNA。其中,与相容溶质有关的基因包括 treC、galU、proX 和 proW,它们参与了三卤糖的合成、脯氨酸和甜菜碱的代谢,在缓解渗透胁迫方面发挥着重要作用。此外,KRS009基因组还包含与高耐盐性相关的基因,包括负责Na+/H+反转运体、K+转运体TrkH硫胺素磷酸合成酶、K+感应组氨酸激酶、芳基-磷酸-β-D-葡萄糖苷酶、与阳离子扩散促进因子CzcD相关的黄素蛋白CzcO和伴侣蛋白GroEL。总之,菌株 KRS009 的高质量基因组资源将为进一步研究其生物防治和植物耐盐机制提供分子基础。
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