Department of Biotechnology, Pondicherry University, Kalapet, Pondicherry, 605014, India.
Department of Microbiology, Pondicherry University, Kalapet, Pondicherry, 605014, India.
Fungal Biol. 2018 Oct;122(10):998-1012. doi: 10.1016/j.funbio.2018.07.003. Epub 2018 Jul 12.
In the present study, secondary metabolites from an endophytic fungus, Alternaria alternata, colonizing Carica papaya, demonstrated antiquorum sensing properties against Pseudomonas aeruginosa. This study reports the antagonistic effects of fungal crude extract of A. alternata against the various quorum sensing (QS) associated virulent factors such as percentage decrease in production of pyocyanin, alginate, chitinase and rhamnolipid; significant decrease in proteases activity such as LasA protease activity, staphylolytic activity, Las B elastase; and a marked decrease in biofilm formation and associated factors such as exopolysaccharide (EPS) production and cell surface hydrophobicity (CSH). Further, motility pattern i.e., swimming and swarming was also found to be inhibited. This down regulation of QS and associated factors are further supported by in-silico analysis of interaction between QS receptor LasR and bioactive molecules viz., sulfurous acid, 2-propyl tridecyl ester and 1,2-benzenedicarboxylic acid, bis(2-methylpropyl) ester present in fungal crude extract, found based on GCMS analysis, sketches the modulating ability of QS expression. This is the first report on an endophytic fungus of C. papaya having a role in QS inhibition against P. aeruginosa and lays a platform to explore further the endophytes for potent therapeutic agents in QS.
在本研究中,定殖于木瓜的链格孢属内生真菌的次生代谢产物对铜绿假单胞菌表现出抗群体感应特性。本研究报道了链格孢属真菌粗提物对各种群体感应(QS)相关毒力因子的拮抗作用,如减少绿脓菌素、海藻酸盐、几丁质酶和鼠李糖脂的产生百分比;显著降低蛋白酶活性,如 LasA 蛋白酶活性、葡萄球菌溶菌活性、Las B 弹性蛋白酶;生物膜形成及其相关因子如胞外多糖(EPS)产生和细胞表面疏水性(CSH)显著降低。此外,还发现运动模式,即泳动和群集,也受到抑制。QS 及其相关因子的这种下调进一步得到了群体感应受体 LasR 与生物活性分子之间相互作用的计算分析的支持,这些生物活性分子是从真菌粗提取物中发现的,根据 GCMS 分析,它们是硫磺酸、2-丙基十三烷基酯和 1,2-苯二甲酸、双(2-甲基丙基)酯,这些分子存在于真菌粗提物中,这描绘了 QS 表达的调节能力。这是第一个关于木瓜内生真菌在抑制铜绿假单胞菌的群体感应中的作用的报告,并为进一步探索内寄生菌作为 QS 的潜在治疗剂奠定了基础。