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白鲸的皮肤微生物群:空间、时间及与健康相关的动态变化

Skin microbiome of beluga whales: spatial, temporal, and health-related dynamics.

作者信息

Van Cise Amy M, Wade Paul R, Goertz Caroline E C, Burek-Huntington Kathy, Parsons Kim M, Clauss Tonya, Hobbs Roderick C, Apprill Amy

机构信息

Woods Hole Oceanographic Institution, Woods Hole, MA, USA.

North Gulf Oceanic Society, Visiting Scientist at Northwest Fisheries Science Center, NOAA National Marine Fisheries Service, Seattle, WA, USA.

出版信息

Anim Microbiome. 2020 Oct 22;2(1):39. doi: 10.1186/s42523-020-00057-1.

Abstract

BACKGROUND

Host-specific microbiomes play an important role in individual health and ecology; in marine mammals, epidermal microbiomes may be a protective barrier between the host and its aqueous environment. Understanding these epidermal-associated microbial communities, and their ecological- or health-driven variability, is the first step toward developing health indices for rapid assessment of individual or population health. In Cook Inlet, Alaska, an endangered population of beluga whales (Delphinapterus leucas) numbers fewer than 300 animals and continues to decline, despite more than a decade of conservation effort. Characterizing the epidermal microbiome of this species could provide insight into the ecology and health of this endangered population and allow the development of minimally invasive health indicators based on tissue samples.

RESULTS

We sequenced the hypervariable IV region of bacterial and archaeal SSU rRNA genes from epidermal tissue samples collected from endangered Cook Inlet beluga whales (n = 33) and the nearest neighboring population in Bristol Bay (n = 39) between 2012 and 2018. We examined the sequences using amplicon sequence variant (ASV)-based analyses, and no ASVs were associated with all individuals, indicating a greater degree of epidermal microbiome variability among beluga whales than in previously studied cetacean species and suggesting the absence of a species-specific core microbiome. Epidermal microbiome composition differed significantly between populations and across sampling years. Comparing the microbiomes of Bristol Bay individuals of known health status revealed 11 ASVs associated with potential pathogens that differed in abundance between healthy individuals and those with skin lesions or dermatitis. Molting and non-molting individuals also differed significantly in microbial diversity and the abundance of potential pathogen-associated ASVs, indicating the importance of molting in maintaining skin health.

CONCLUSIONS

We provide novel insights into the dynamics of Alaskan beluga whale epidermal microbial communities. A core epidermal microbiome was not identified across all animals. We characterize microbial dynamics related to population, sampling year and health state including level of skin molting. The results of this study provide a basis for future work to understand the role of the skin microbiome in beluga whale health and to develop health indices for management of the endangered Cook Inlet beluga whales, and cetaceans more broadly.

摘要

背景

宿主特异性微生物群在个体健康和生态中发挥着重要作用;在海洋哺乳动物中,表皮微生物群可能是宿主与其水生环境之间的保护屏障。了解这些与表皮相关的微生物群落及其受生态或健康驱动的变异性,是制定健康指数以快速评估个体或种群健康的第一步。在阿拉斯加的库克湾,白鲸(白鲸属)的濒危种群数量不足300头,尽管经过了十多年的保护努力,数量仍在持续下降。对该物种的表皮微生物群进行特征分析,可以深入了解这个濒危种群的生态和健康状况,并基于组织样本开发微创健康指标。

结果

我们对2012年至2018年间从濒危的库克湾白鲸(n = 33)和布里斯托尔湾最近的相邻种群(n = 39)采集的表皮组织样本中的细菌和古菌SSU rRNA基因的高变IV区进行了测序。我们使用基于扩增子序列变异(ASV)的分析方法检查了序列,没有ASV与所有个体相关联,这表明白鲸的表皮微生物群变异性程度高于先前研究的鲸类物种,也表明不存在物种特异性的核心微生物群。不同种群之间以及不同采样年份的表皮微生物群组成存在显著差异。比较已知健康状况的布里斯托尔湾个体的微生物群发现,有11个ASV与潜在病原体相关,健康个体与有皮肤损伤或皮炎的个体之间这些ASV的丰度不同。蜕皮个体和未蜕皮个体在微生物多样性和潜在病原体相关ASV的丰度方面也存在显著差异,这表明蜕皮在维持皮肤健康方面的重要性。

结论

我们为阿拉斯加白鲸表皮微生物群落的动态变化提供了新的见解。并未在所有动物中识别出核心表皮微生物群。我们描述了与种群、采样年份和健康状态(包括皮肤蜕皮水平)相关的微生物动态变化。本研究结果为未来了解皮肤微生物群在白鲸健康中的作用以及为管理濒危的库克湾白鲸和更广泛的鲸类制定健康指数的工作提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29c6/7807513/7475d09fe2c3/42523_2020_57_Fig1_HTML.jpg

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