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首页> 外文期刊>Research in Microbiology >The phosphotransferase system gene ptsH plays an important role in MnSOD production, biofilm formation, swarming motility, and root colonization in Bacillus cereus 905
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The phosphotransferase system gene ptsH plays an important role in MnSOD production, biofilm formation, swarming motility, and root colonization in Bacillus cereus 905

机译:Phosphotoransferase System Gene Ptsh在芽孢杆菌905中发挥着MNSOD生产,生物膜形成,群体植物和根殖民化的重要作用

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摘要

The rhizosphere bacterium Bacillus cereus 905 is capable of promoting plant growth through effective colonization on plant roots. The sodA2-encoding manganese-containing superoxide dismutase (MnSOD2) is important for survival of B. cereus 905 in the wheat rhizosphere. However, the genes involved in regulating sodA2 expression and the mechanisms of rhizosphere colonization of B. cereus 905 are not well elucidated. In this study, we found that the deletion of the ptsH gene, which encodes the histidine-phosphorylatable protein (HPr), a component of the phospho transferase system (PTS), causes a decrease of about 60% in the MnSOD2 expression. Evidences indicate that the ptsH dramatically influences resistance to oxidative stress, glucose uptake, as well as biofilm formation and swarming motility of B. cereus 905. Root colonization assay demonstrated that AptsH is defective in colonizing wheat roots, while complementation of the sodA2 gene could partially restore the ability in utilization of arabinose, a non-PTS sugar, and root colonization caused by the loss of the ptsH gene. In toto, based on the current findings, we propose that PtsH contributes to root colonization of B. cereus 905 through multiple indistinct mechanisms, involving PTS and uptake of PTS-sugars, up-regulation of MnSOD2 production, and promotion of biofilm formation and swarming motility. (C) 2018 Institut Pasteur. Published by Elsevier Masson SAS. All rights reserved.
机译:根际细菌芽孢杆菌905能够通过有效的植物根系殖民化促进植物生长。编码含锰的超氧化物歧化酶(MNSOD2)对于小麦根际的B.荚膜905的生存是重要的。然而,参与调节SODA2表达的基因和B.Cereus 905的根际定植机制并不熟悉。在本研究中,我们发现,编码组氨酸 - 可磷酸化蛋白(HPR)的PTSH基因,磷酸转移酶系统(PTS)的组分,在MNSOD2表达中降低约60%。证据表明,PTSH显着影响抗氧化应激,葡萄糖摄取以及B.Cereus 905的生物膜形成和蜂拥而至的动力。根部定植测定证明在殖民模块根系中有缺陷,同时可以部分地进行苏打化基因的互补性恢复利用阿拉伯糖的能力,非Pts糖和由PTSH基因的丧失引起的根部定植。在托托基于当前发现,我们提出PTSH通过多种模糊机制促进B.培养物905的根部定植,涉及PTS-糖的PTS和摄取,MNSOD2生产的上调和促进生物膜形成和蜂拥而至动力。 (c)2018年Institut Pasteur。由Elsevier Masson SA出版。版权所有。

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