冬眠晚期从麝香猫皮肤中分离出的微生物群多样性和抗破坏性假膜菌。

IF 3.9 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Applied and Environmental Microbiology Pub Date : 2024-08-21 Epub Date: 2024-07-26 DOI:10.1128/aem.00693-24
Yaping Lu, Huilan Ren, Zhongle Li, Haixia Leng, Aoqiang Li, Wentao Dai, Long Huang, Jiang Feng, Keping Sun
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引用次数: 0

摘要

寄居在宿主皮肤上的共生微生物是脊椎动物抵御病原体的主要防御手段。具体来说,蝙蝠的皮肤微生物群可能在抵御引起白鼻综合征的病原体--破坏性假膜梭菌(Pd)方面起着至关重要的作用。然而,人们对亚洲高抵抗力蝙蝠表皮共生微生物组及其在抵抗 Pd 方面的具体作用仍不甚了解。在这项研究中,我们收集并鉴定了中国 19 只滇金丝猴的皮肤微生物群样本,并探讨了 Pd 阳性个体与阴性个体之间的差异。我们通过培养方法确定了这些细菌的抑制作用。结果发现,阳性个体皮肤微生物群的辛普森多样性指数明显低于阴性个体,而假单胞菌的相对丰度在阳性蝙蝠中明显较高。无论蝙蝠的 Pd 检测结果是阳性还是阴性,皮肤微生物群中潜在抗真菌属的相对丰度都很高。此外,我们成功地从蝙蝠皮肤中分离出了 165 种微生物,其中 41 种来自阳性个体,而只有 12 种来自阴性个体,它们能够抑制 Pd 的生长。我们共筛选出 10 个钯抑制细菌属,其中 Algoriella 属、Glutamicibacter 属和 Psychrobacter 属是新发现的钯抑制细菌属。这些钯抑制细菌代谢多种挥发性化合物,包括二甲基三硫、二甲基二硫、丙烯硫醚、2-十一酮和 2-壬酮,在低浓度下能够完全抑制钯的生长。中国蝙蝠对破坏性假丝酵母菌(Pseudogymnoascus destructructans)具有很强的抵抗力,这为研究白鼻综合征的管理和了解蝙蝠抵抗病原体的内在机制提供了有力的参考。这项研究揭示了宿主皮肤共生微生物在抵抗病原真菌中的关键作用,并强调了利用自然防御机制预防和治疗白鼻综合征的潜力。此外,这还可能为开发生物杀虫剂和杀真菌剂提供有希望的候选者,为解决野生动物和农业环境中的真菌疾病提供新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microbiota diversity and anti-Pseudogymnoascus destructans bacteria isolated from Myotis pilosus skin during late hibernation.

Symbiotic microorganisms that reside on the host skin serve as the primary defense against pathogens in vertebrates. Specifically, the skin microbiome of bats may play a crucial role in providing resistance against Pseudogymnoascus destructans (Pd), the pathogen causing white-nose syndrome. However, the epidermis symbiotic microbiome and its specific role in resisting Pd in highly resistant bats in Asia are still not well understood. In this study, we collected and characterized skin microbiota samples of 19 Myotis pilosus in China and explored the differences between Pd-positive and negative individuals. We identified inhibitory effects of these bacteria through cultivation methods. Our results revealed that the Simpson diversity index of the skin microbiota for positive individuals was significantly lower than that of negative individuals, and the relative abundance of Pseudomonas was significantly higher in positive bats. Regardless of whether individuals were positive or negative for Pd, the relative abundance of potentially antifungal genera in skin microbiota was high. Moreover, we successfully isolated 165 microbes from bat skin and 41 isolates from positive individuals able to inhibit Pd growth compared to only 12 isolates from negative individuals. A total of 10 genera of Pd-inhibiting bacteria were screened, among which the genera Algoriella, Glutamicibacter, and Psychrobacter were newly discovered as Pd-inhibiting genera. These Pd-inhibiting bacteria metabolized a variety of volatile compounds, including dimethyl trisulfide, dimethyl disulfide, propylene sulfide, 2-undecanone, and 2-nonanone, which were able to completely inhibit Pd growth at low concentrations.IMPORTANCERecently, white-nose syndrome has caused the deaths of millions of hibernating bats, even threatening some with regional extinction. Bats in China with high resistance to Pseudogymnoascus destructans can provide a powerful reference for studying the management of white-nose syndrome and understanding the bats against the pathogen's intrinsic mechanisms. This study sheds light on the crucial role of host symbiotic skin microorganisms in resistance to pathogenic fungi and highlights the potential for harnessing natural defense mechanisms for the prevention and treatment of white-nose syndrome. In addition, this may also provide promising candidates for the development of bioinsecticides and fungicides that offer new avenues for addressing fungal diseases in wildlife and agricultural environments.

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来源期刊
Applied and Environmental Microbiology
Applied and Environmental Microbiology 生物-生物工程与应用微生物
CiteScore
7.70
自引率
2.30%
发文量
730
审稿时长
1.9 months
期刊介绍: Applied and Environmental Microbiology (AEM) publishes papers that make significant contributions to (a) applied microbiology, including biotechnology, protein engineering, bioremediation, and food microbiology, (b) microbial ecology, including environmental, organismic, and genomic microbiology, and (c) interdisciplinary microbiology, including invertebrate microbiology, plant microbiology, aquatic microbiology, and geomicrobiology.
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