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首页> 外文期刊>FEMS Microbiology Ecology >Birds, feather-degrading bacteria and preen glands: the antimicrobial activity of preen gland secretions from turkeys (Meleagris gallopavo) is amplified by keratinase
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Birds, feather-degrading bacteria and preen glands: the antimicrobial activity of preen gland secretions from turkeys (Meleagris gallopavo) is amplified by keratinase

机译:鸟类,羽毛降解细菌和预腺:由角蛋白酶扩增来自火鸡(Meleagris Gallopavo)的预升腺分泌物的抗微生物活性

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The function of uropygial glands (preen glands) has been subject to controversial debates. In this study, we evaluated the antimicrobial potential of preen gland secretions of turkeys (Meleagris gallopavo) against 18 microbial strains by means of diffusion tests, broth microdilutions, checkerboard assays and time-kill curves. Furthermore, we tested the hypothesis that lipids exert direct antimicrobial effects on pathogens. Moreover, we checked for mutualistic relationships between the preen gland bacterium Corynebacterium uropygiale with its hosts. We found that preen gland secretions significantly inhibited the growth of a broad spectrum of bacteria and fungi, particularly when combined with keratinase. Combinations effectively killed multidrug resistant microorganisms in a strongly synergistic manner. Since feather-degrading microorganisms (FDM) express keratinase and thereby disrupt the integrity of the plumage, our data suggests that preen gland secretions of turkeys are specifically activated in the presence of FDM, and specifically eliminate FDM from feathers. However, antimicrobial effects did not originate from lipids, but were mediated by highly polar compounds which might be antimicrobial peptides (AMPs). Finally, C. uropygiale is apparently not involved in the antimicrobial activity of preen gland secretions of turkeys. In conclusion, our results suggest that turkeys can antagonize FDM by amplifying the antimicrobial properties of their preen gland secretions.
机译:副植物腺体(饲养腺体)的功能受到有争议的辩论。在这项研究中,我们通过扩散试验,肉汤微渗,棋盘测定和时间杀死曲线评估了火鸡(Meleagis Gallopavo)对火鸡(Meleagris Gallopavo)的抗微生物分泌物对18个微生物菌株的抗微生物潜力。此外,我们测试了脂质对病原体产生直接抗微生物作用的假设。此外,我们检查了与其主持人的孕腺细菌棒状杆菌遗址之间的互联关系。我们发现,预先腺体分泌物显着抑制了广谱的细菌和真菌的生长,特别是当与角蛋白酶结合时。组合以强烈协同的方式有效地杀死了多药抗性微生物。由于羽毛降解微生物(FDM)表达角蛋白酶,从而破坏了羽毛的完整性,我们的数据表明火鸡的预先活塞在FDM存在下特异性激活,并且特别从羽毛中消除FDM。然而,抗微生物作用不源于脂质,而是由可能是抗微生物肽(AMPS)的高极性化合物介导的。最后,C. Uraygiale显然没有参与火鸡饲养腺体分泌物的抗微生物活性。总之,我们的研究结果表明,火鸡可以通过放大其预先灌注腺体分泌物的抗微生物性能来拮抗FDM。

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