首页> 外文期刊>Journal of Integrative Agriculture >Identification of the nitrogen-fixing Pseudomonas stutzeri major flagellar gene regulator FIeQ and its role in biofilm formation and root colonization
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Identification of the nitrogen-fixing Pseudomonas stutzeri major flagellar gene regulator FIeQ and its role in biofilm formation and root colonization

机译:固氮斯氏假单胞菌主要鞭毛基因调节剂FIeQ的鉴定及其在生物膜形成和根部定植中的作用

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摘要

Flagellar biosynthesis and motility are subject to a four-tiered transcriptional regulatory circuit in Pseudomonas, and the master regulator FleQ appears to be the highest-level regulator in this hierarchical regulatory cascade. Pseudomonas stutzeri A1501 is motile by a polar flagellum; however, the motility and regulatory mechanisms involved in this process are unknown. Here, we searched the A1501 genome for flagella and motility genes and found that approximately 50 genes, which were distributed in three non-contiguous chromosomal regions, contribute to the formation, regulation and function of the flagella. The non-polar mutation of fleQ impaired flagellar biosynthesis, motility and root colonization but enhanced biofilm formation. FIeQ positively regulates the expression of flagellar class II-IV genes, suggesting a regulatory cascade that is coordinated similar to that of the well-known P. aeruginosa. Based on our results, we propose that flagellar genes in P. stutzeri A1501 are regulated in a cascade regulated by FIeQ and that flagellum-driven motility properties may be necessary for competitive rhizosphere colonization.
机译:鞭毛的生物合成和运动受到假单胞菌的四级转录调节回路的控制,而主调节剂FleQ似乎是该分级调节级联中的最高水平的调节剂。 Stutzeri假单胞菌A1501通过极鞭毛运动。但是,此过程涉及的动力和调节机制尚不清楚。在这里,我们在A1501基因组中搜索鞭毛和能动性基因,发现分布在三个非连续染色体区域中的大约50个基因有助于鞭毛的形成,调控和功能。 fleQ的非极性突变会损害鞭毛的生物合成,活力和根部定植,但会增强生物膜的形成。 FIeQ积极调节鞭毛II-IV类基因的表达,表明其调控级联反应与众所周知的铜绿假单胞菌相似。根据我们的研究结果,我们提出斯图氏假单胞菌A1501中的鞭毛基因受FIeQ调控的级联调控,鞭毛驱动的运动特性可能是竞争性根际定植的必要条件。

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