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Nonribosomal Peptide Synthase Gene Clusters for Lipopeptide Biosynthesis in Bacillus subtilis 916 and Their Phenotypic Functions

机译:枯草芽孢杆菌916脂肽生物合成的非核糖体肽合酶基因簇及其表型功能

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摘要

Bacillus cyclic lipopeptides (LPs) have been well studied for their phytopathogen-antagonistic activities. Recently, research has shown that these LPs also contribute to the phenotypic features of Bacillus strains, such as hemolytic activity, swarming motility, biofilm formation, and colony morphology. Bacillus subtilis 916 not only coproduces the three families of well-known LPs, i.e., surfactins, bacillomycin Ls (iturin family), and fengycins, but also produces a new family of LP called locillomycins. The genome of B. subtilis 916 contains four nonribosomal peptide synthase (NRPS) gene clusters, srf, bmy, fen, and loc, which are responsible for the biosynthesis of surfactins, bacillomycin Ls, fengycins, and locillomycins, respectively. By studying B. subtilis 916 mutants lacking production of one, two, or three LPs, we attempted to unveil the connections between LPs and phenotypic features. We demonstrated that bacillomycin Ls and fengycins contribute mainly to antifungal activity. Although surfactins have weak antifungal activity in vitro, the strain mutated in srfAA had significantly decreased antifungal activity. This may be due to the impaired productions of fengycins and bacillomycin Ls. We also found that the disruption of any LP gene cluster other than fen resulted in a change in colony morphology. While surfactins and bacillomycin Ls play very important roles in hemolytic activity, swarming motility, and biofilm formation, the fengycins and locillomycins had little influence on these phenotypic features. In conclusion, B. subtilis 916 coproduces four families of LPs which contribute to the phenotypic features of B. subtilis 916 in an intricate way.
机译:环状芽孢杆菌脂肽(LPs)的植物病原体拮抗活性已得到很好的研究。最近,研究表明这些LP也有助于芽孢杆菌菌株的表型特征,例如溶血活性,成群运动,生物膜形成和菌落形态。枯草芽孢杆菌916不仅可以共同产生三个著名的LP家族,即表面活性素,芽孢杆菌素Ls(伊图林家族)和丰霉素,而且还可以产生一个新的LP家族,称为洛洛霉素。枯草芽孢杆菌916的基因组包含四个非核糖体肽合酶(NRPS)基因簇srf,bmy,fen和loc,它们分别负责表面活性素,细菌素Ls,丰霉素和罗洛霉素的生物合成。通过研究枯草芽孢杆菌916突变体,它们缺乏一个,两个或三个LP的产生,我们试图揭示LP与表型特征之间的联系。我们证明了细菌霉素Ls和fengycins主要有助于抗真菌活性。尽管表面活性素在体外具有较弱的抗真菌活性,但在srfAA中突变的菌株却具有明显降低的抗真菌活性。这可能是由于丰霉素和细菌霉素Ls的生产受损。我们还发现,除fen外的任何LP基因簇的破坏都会导致菌落形态发生变化。尽管表面活性素和杆菌霉素在溶血活性,成群运动和生物膜形成中起着非常重要的作用,但风霉素和罗霉素对这些表型特征影响很小。总之,枯草芽孢杆菌916共同产生四个LP家族,它们以复杂的方式对枯草芽孢杆菌916的表型特征起作用。

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