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Role of Burkholderia cenocepacia afcE and afcF genes in determining lipid-metabolism-associated phenotypes

机译:Burkholderia cenocepacia afcE和afcF基因在确定与脂质代谢相关的表型中的作用

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Burkholderia cenocepacia is an opportunistic pathogen that primarily infects cystic fibrosis patients. Previously we have reported that mutations in shvR, a LysR-type transcriptional regulator, and ShvR-regulated genes BCAS0208 and BCAS0201 (designated afcE and afcF, respectively) affect colony morphotype, biofilm and pellicle formation and virulence in B. cenocepacia. In this study we investigated the role of afcE and afcF in influencing lipid-metabolism-associated phenotypes. As previously reported for K56-2ΔshvR, the Δ2afcE and afcF?:?:?lux mutants had no antifungal activity against Fusarium and Rhizoctonia solani, suggesting that these genes are involved in synthesis of a membrane-associated antifungal lipopeptide. Strains Δ2afcE and afcF?:?:?lux had reduced swarming motility and altered cell membrane morphology, both of which were restored to wild-type levels upon providing these genes in trans. Both K56-2ΔshvR and Δ2afcE showed increased uptake of the hydrophobic fluorescent probe N-phenylnaphthylamine (NPN), indicating altered outer membrane properties. Total lipid profiles determined by TLC revealed distinct differences in cellular lipid compositions of K56-2ΔshvR, Δ2afcE and afcF?:?:?lux compared with K56-2. Taken together, these results indicate that afcE and afcF are involved in metabolic pathway(s) influencing lipid profiles and affect both cell surface and antifungal properties of B. cenocepacia.
机译:Burkholderia cenocepacia是一种机会病原体,主要感染囊性纤维化患者。以前我们已经报道过shvR,LysR型转录调节子和ShvR调节基因BCAS0208和BCAS0201的突变(分别称为afcE和afcF)会影响菌落形态,生物膜和表膜的形成以及酒糟芽胞杆菌的毒力。在这项研究中,我们调查了afcE和afcF在影响脂质代谢相关表型中的作用。如先前关于K56-2ΔshvR的报道,Δ2afcE和afcFα:β:βlux突变体对镰孢镰刀菌和枯萎病菌没有抗真菌活性,表明这些基因参与膜相关的抗真菌脂肽的合成。菌株Δ2afcE和afcFα:α:βlux减少了群体运动并改变了细胞膜的形态,通过反式提供这些基因,它们都恢复了野生型水平。 K56-2ΔshvR和Δ2afcE均显示出疏水性荧光探针N-苯基萘胺(NPN)的吸收增加,表明外膜特性发生了变化。通过TLC测定的总脂质谱显示出与K56-2相比,K56-2ΔshvR,Δ2afcE和afcFα∶α∶βlux的细胞脂质组成明显不同。两者合计,这些结果表明,afcE和afcF参与了影响脂质谱的代谢途径,并影响了新洋葱双歧杆菌的细胞表面和抗真菌特性。

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