首页> 外文期刊>BMC Microbiology >Characterization and functional analysis of seven flagellin genes in Rhizobium leguminosarum bv. viciae. Characterization of R. leguminosarum flagellins
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Characterization and functional analysis of seven flagellin genes in Rhizobium leguminosarum bv. viciae. Characterization of R. leguminosarum flagellins

机译:豆科根瘤菌中七个鞭毛蛋白基因的表征和功能分析。蚕豆豆类鞭毛鞭毛蛋白的表征

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Background Rhizobium leguminosarum bv. viciae establishes symbiotic nitrogen fixing partnerships with plant species belonging to the Tribe Vicieae, which includes the genera Vicia, Lathyrus, Pisum and Lens. Motility and chemotaxis are important in the ecology of R. leguminosarum to provide a competitive advantage during the early steps of nodulation, but the mechanisms of motility and flagellar assembly remain poorly studied. This paper addresses the role of the seven flagellin genes in producing a functional flagellum. Results R. leguminosarum strains 3841 and VF39SM have seven flagellin genes (flaA, flaB, flaC, flaD, flaE, flaH, and flaG), which are transcribed separately. The predicted flagellins of 3841 are highly similar or identical to the corresponding flagellins in VF39SM. flaA, flaB, flaC, and flaD are in tandem array and are located in the main flagellar gene cluster. flaH and flaG are located outside of the flagellar/motility region while flaE is plasmid-borne. Five flagellin subunits (FlaA, FlaB, FlaC, FlaE, and FlaG) are highly similar to each other, whereas FlaD and FlaH are more distantly related. All flagellins exhibit conserved amino acid residues at the N- and C-terminal ends and are variable in the central regions. Strain 3841 has 1-3 plain subpolar flagella while strain VF39SM exhibits 4-7 plain peritrichous flagella. Three flagellins (FlaA/B/C) and five flagellins (FlaA/B/C/E/G) were detected by mass spectrometry in the flagellar filaments of strains 3841 and VF39SM, respectively. Mutation of flaA resulted in non-motile VF39SM and extremely reduced motility in 3841. Individual mutations of flaB and flaC resulted in shorter flagellar filaments and consequently reduced swimming and swarming motility for both strains. Mutant VF39SM strains carrying individual mutations in flaD, flaE, flaH, and flaG were not significantly affected in motility and filament morphology. The flagellar filament and the motility of 3841 strains with mutations in flaD and flaG were not significantly affected while flaE and flaH mutants exhibited shortened filaments and reduced swimming motility. Conclusion The results obtained from this study demonstrate that FlaA, FlaB, and FlaC are major components of the flagellar filament while FlaD and FlaG are minor components for R. leguminosarum strains 3841 and VF39SM. We also observed differences between the two strains, wherein FlaE and FlaH appear to be minor components of the flagellar filaments in VF39SM but these flagellin subunits may play more important roles in 3841. This paper also demonstrates that the flagellins of 3841 and VF39SM are possibly glycosylated.
机译:背景豆科根瘤菌。 viciae与属于Tricia Vicieae的植物物种建立了共生固氮伙伴关系,其中包括Vicia,Lathyrus,Pisum和Lens属。运动性和趋化性在豆科植物的生态学中很重要,可以在结瘤的早期阶段提供竞争优势,但是运动性和鞭毛组装的机制仍然缺乏研究。本文探讨了七个鞭毛蛋白基因在产生功能鞭毛中的作用。结果豆科念珠菌菌株3841和VF39SM具有七个鞭毛蛋白基因(flaA,flaB,flaC,flaD,flaE,flaH和flaG),分别转录。 3841的预测鞭毛蛋白与VF39SM中的相应鞭毛蛋白高度相似或相同。 flaA,flaB,flaC和flaD串联排列,位于鞭毛的主要基因簇中。 flaH和flaG位于鞭毛/运动区之外,而flaE是质粒携带的。五个鞭毛蛋白亚基(FlaA,FlaB,FlaC,FlaE和FlaG)彼此高度相似,而FlaD和FlaH的亲缘关系更远。所有鞭毛蛋白在N-和C-末端均显示保守的氨基酸残基,并且在中心区域可变。菌株3841具有1-3个普通的亚极鞭毛,而菌株VF39SM表现出4-7个普通的周生鞭毛。通过质谱法分别在菌株3841和VF39SM的鞭毛细丝中检测到三种鞭毛蛋白(FlaA / B / C)和五个鞭毛蛋白(FlaA / B / C / E / G)。 flaA的突变导致非活动性VF39SM并在3841年使运动性大大降低。flaB和flaC的单独突变导致鞭毛细丝变短,因此两种菌株的游泳和成虫运动性降低。携带flaD,flaE,flaH和flaG中个别突变的突变VF39SM菌株在运动性和细丝形态上均未受到明显影响。鞭毛丝和3841带有flaD和flaG突变的菌株的运动性没有受到显着影响,而flaE和flaH突变体的丝缩短和游泳运动性降低。结论从这项研究获得的结果表明,FlaA,FlaB和FlaC是鞭毛丝的主要成分,而FlaD和FlaG是豆科念珠菌3841和VF39SM菌株的次要成分。我们还观察到了两个菌株之间的差异,其中FlaE和FlaH似乎是VF39SM中鞭毛细丝的次要成分,但这些鞭毛蛋白亚基在3841中可能起着更重要的作用。 。

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