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Genetic Analysis of the AdnA Regulon in Pseudomonas fluorescens: Nonessential Role of Flagella in Adhesion to Sand and Biofilm Formation

机译:荧光假单胞菌中的AdnA调节子的遗传分析:鞭毛在粘附到沙子和生物膜形成中的不必要作用

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摘要

AdnA is a transcription factor in Pseudomonas fluorescens that affects flagellar synthesis, biofilm formation, and sand adhesion. To identify the AdnA regulon, we used a promoterless Tn5-lacZ element to study the phenotypes of insertion mutants in the presence and absence of AdnA. Of 12,000 insertions, we identified seven different putative open reading frames (ORFs) activated by AdnA (named aba for activated by AdnA). aba120 and aba177 showed homology to flgC and flgI, components of the basal body of the flagella in Pseudomonas aeruginosa. Two other insertions, aba18 and aba51, disrupted genes affecting chemotaxis. The mutant loci aba160 (possibly affecting lipopolysaccharide synthesis) and aba175 (unknown function) led to loss of flagella. The mutant bearing aba203 became motile when complemented with adnA, but the mutated gene showed no similarity to known genes. Curiously, aba18, aba51, aba160, and aba203 mutants formed biofilms even in the absence of AdnA, suppressing the phenotype of the adnA deletion mutant. The combined findings suggest that flagella are nonessential for sand attachment or biofilm formation. Sequence and promoter analyses indicate that AdnA affects at least 23 ORFs either directly or by polar effects. These results support the concept that AdnA regulates cell processes other than those directly related to flagellar synthesis and define a broader cadre of genes in P. fluorescens than that described so far for its homolog, FleQ, in P. aeruginosa.
机译:AdnA是荧光假单胞菌中的一种转录因子,会影响鞭毛的合成,生物膜的形成和沙子的粘附。为了鉴定AdnA调节子,我们使用无启动子的Tn5-lacZ元件研究在存在和不存在AdnA的情况下插入突变体的表型。在12,000次插入中,我们鉴定了由AdnA激活的七个不同的推定开放阅读框(ORF)(命名为aba由AdnA激活)。 aba120和aba177与铜绿假单胞菌鞭毛基体成分flgC和flgI具有同源性。其他两个插入,aba18和aba51,破坏了影响趋化性的基因。突变基因座aba160(可能影响脂多糖的合成)和aba175(功能未知)导致鞭毛丧失。带有aba203的突变体在与adnA互补时成为能动的,但突变的基因与已知基因没有相似性。奇怪的是,即使没有AdnA,aba18,aba51,aba160和aba203突变体也会形成生物膜,从而抑制了adnA缺失突变体的表型。综合研究结果表明,鞭毛对于沙粒附着或生物膜形成不是必需的。序列和启动子分析表明,AdnA直接或通过极性作用影响至少23个ORF。这些结果支持了AdnA调节除鞭毛合成直接相关的细胞过程以外的其他细胞过程的概念,并定义了荧光假单胞菌中比迄今为止在铜绿假单胞菌中为其同源物FleQ所描述的基因更广泛的基因干群。

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