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Identification of the core c-di-GMP turnover proteins responsible for root colonization of Bacillus velezensis.


ABSTRACT: Root colonization by beneficial rhizobacteria determines their plant beneficial effects. The messenger c-di-GMP is involved in the bacterial transition process between motility and biofilm, which are crucial to the colonization ability of the rhizobacteria. In this study, we identified three GGDEF domain-containing proteins (YdaK, YhcK, and YtrP) and two EAL domain-containing proteins (YuxH and YkuI) in beneficial rhizobacterium Bacillus velezensis SQR9. We found that deficiency of ytrP or ykuI in SQR9 led to impaired biofilm formation, while deficiency of yuxH led to weakened motility. Further investigation showed that YtrP, YuxH, and YkuI all contributed to the root colonization of SQR9 on cucumber root. Further bioinformatics analysis showed that YtrP and YuxH are conserved in plant beneficial Bacillus group, while they do not occur in animal pathogenic Bacillus. This research will be useful for enhancing the beneficial function of Bacillus spp. in agricultural application.

SUBMITTER: Dong X 

PROVIDER: S-EPMC9589206 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Identification of the core c-di-GMP turnover proteins responsible for root colonization of <i>Bacillus velezensis</i>.

Dong Xiaoyan X   Tu Chen C   Liu Yanan Y   Zhang Ruifu R   Liu Yunpeng Y  

iScience 20221006 11


Root colonization by beneficial rhizobacteria determines their plant beneficial effects. The messenger c-di-GMP is involved in the bacterial transition process between motility and biofilm, which are crucial to the colonization ability of the rhizobacteria. In this study, we identified three GGDEF domain-containing proteins (YdaK, YhcK, and YtrP) and two EAL domain-containing proteins (YuxH and YkuI) in beneficial rhizobacterium <i>Bacillus velezensis</i> SQR9. We found that deficiency of <i>ytr  ...[more]

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