首页> 外文期刊>Algae >The fucose containing polymer (FCP) rich fraction of Ascophyllum nodosum (L.) Le Jol. protects Caenorhabditis elegans against Pseudomonas aeruginosa by triggering innate immune signaling pathways and suppression of pathogen virulence factors
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The fucose containing polymer (FCP) rich fraction of Ascophyllum nodosum (L.) Le Jol. protects Caenorhabditis elegans against Pseudomonas aeruginosa by triggering innate immune signaling pathways and suppression of pathogen virulence factors

机译:结实的Ascophyllum nodosum(L.)Le Jol。的富含岩藻糖的聚合物(FCP)部分。通过触发先天性免疫信号通路和抑制病原体毒力因子,保护秀丽隐杆线虫免于铜绿假单胞菌

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Brown algal extracts have long been used as feed supplements to promote health of farm animals. Here, we show new molecular insights in to the mechanism of action of a fucose containing polymer (FCP) rich fraction from the brown seaweed Ascophyllum nodosum using the Caenorhabditis elegans-Pseudomonas aeruginosa PA14 infection model. FCP enhanced survival of C. elegans against pathogen stress, correlated with up-regulation of key immune response genes such as: lipases, lysozyme (lys-1), saponin-like protein (spp-1), thaumatin-like protein (tlp-1), matridin SK domain protein (msk-1), antibacterial protein (abf-1), and lectin family protein (lfp). Further, FCP caused down regulation of P. aeruginosa quorum sensing genes: (lasI, lasR, rhlI, and rhlR), secreted virulence factors (lipase, proteases, and elastases) and toxic metabolites (pyocyanin, hydrogen cyanide, and siderophore). Biofilm formation and motility of pathogenic bacteria were also greatly attenuated when the culture media were treated with FCP. Interestingly, FCP failed to mitigate the pathogen stress in skn-1, daf-2, and pmk-1 mutants of C. elegans. This indicated that, FCP treatment acted on the regulation of fundamental innate immune pathways, which are conserved across the majority of organisms including humans. This study suggests the possible use of FCP, a seaweed component, as a functional food source for healthy living.
机译:长期以来,褐藻提取物一直被用作饲料添加剂,以促进农场动物的健康。在这里,我们使用秀丽隐杆线虫-铜绿假单胞菌PA14感染模型,从褐海藻Ascophyllum nodosum的富含果糖的聚合物(FCP)馏分的作用机理中显示了新的分子洞察力。 FCP增强了秀丽隐杆线虫抵抗病原体胁迫的存活,这与关键免疫反应基因的上调相关,这些基因包括:脂肪酶,溶菌酶(lys-1),皂苷样蛋白(spp-1),索马甜蛋白样蛋白(tlp- 1),matridin SK域蛋白(msk-1),抗菌蛋白(abf-1)和凝集素家族蛋白(lfp)。此外,FCP导致铜绿假单胞菌群体感应基因(lasI,lasR,rhlI和rhlR),分泌的毒力因子(脂肪酶,蛋白酶和弹性蛋白酶)和有毒代谢产物(花青素,氰化氢和铁载体)下调。当用FCP处理培养基时,致病细菌的生物膜形成和运动性也大大减弱。有趣的是,FCP无法缓解秀丽隐杆线虫的skn-1,daf-2和pmk-1突变体中的病原体胁迫。这表明,FCP治疗对基本的先天免疫途径起作用,而这种先天免疫途径在包括人类在内的大多数生物体中都是保守的。这项研究表明,海藻成分FCP可以用作健康生活的功能性食物来源。

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