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对占据不同生态位的两种狐狸——赤狐(Vulpes Vulpes)和沙狐(Vulpes Corsac)的肠道微生物群进行的比较分析。

Comparative Analyses of the Gut Microbiome of Two Fox Species, the Red Fox (Vulpes Vulpes) and Corsac Fox (Vulpes Corsac), that Occupy Different Ecological Niches.

作者信息

Wang Xibao, Shang Yongquan, Wei Qinguo, Wu Xiaoyang, Dou Huashan, Zhang Huanxin, Zhou Shengyang, Sha Weilai, Sun Guolei, Ma Shengchao, Zhang Honghai

机构信息

College of Life Science, Qufu Normal University, Qufu, China.

Hulunbuir Academy of Inland Lakes in Northern Cold & Arid Areas, Hulunbuir, China.

出版信息

Microb Ecol. 2022 Apr;83(3):753-765. doi: 10.1007/s00248-021-01806-8. Epub 2021 Jun 30.

DOI:10.1007/s00248-021-01806-8
PMID:34189610
Abstract

The gut microbiome is integral for the host's living and environmental adaptation and crucially important for understanding host adaptive mechanisms. The red fox (Vulpes vulpes) dominates a wider ecological niche and more complicated habitat than that of the corsac fox (V. corsac). However, the adaptive mechanisms (in particular, the gut microbiome responsible for this kind of difference) are still unclear. Therefore, we investigated the gut microbiome of these two species in the Hulunbuir grassland, China, and evaluated their microbiome composition, function, and adaptive mechanisms. We profiled the gut microbiome and metabolism function of red and corsac foxes via 16S rRNA gene and metagenome sequencing. The foxes harbored species-specific microbiomes and functions that were related to ecological niche and habitat. The red fox had abundant Bacteroides, which leads to significant enrichment of metabolic pathways (K12373 and K21572) and enzymes related to chitin and carbohydrate degradation that may help the red fox adapt to a wider niche. The corsac fox harbored large proportions of Blautia, Terrisporobacter, and ATP-binding cassette (ABC) transporters (K01990, K02003, and K06147) that can help maintain corsac fox health, allowing it to live in harsh habitats. These results indicate that the gut microbiome of the red and corsac foxes may have different abilities which may provide these species with differing capabilities to adapt to different ecological niches and habitats, thus providing important microbiome data for understanding the mechanisms of host adaptation to different niches and habitats.

摘要

肠道微生物群对于宿主的生存和环境适应至关重要,对于理解宿主的适应机制也至关重要。赤狐(Vulpes vulpes)比藏狐(V. corsac)占据更广泛的生态位和更复杂的栖息地。然而,其适应机制(特别是导致这种差异的肠道微生物群)仍不清楚。因此,我们在中国呼伦贝尔草原调查了这两个物种的肠道微生物群,并评估了它们的微生物群组成、功能和适应机制。我们通过16S rRNA基因和宏基因组测序分析了赤狐和藏狐的肠道微生物群及代谢功能。这些狐狸拥有与生态位和栖息地相关的物种特异性微生物群和功能。赤狐拥有丰富的拟杆菌,这导致与几丁质和碳水化合物降解相关的代谢途径(K12373和K21572)和酶显著富集,这可能有助于赤狐适应更广泛的生态位。藏狐拥有大量的布劳特氏菌、土芽孢杆菌和ATP结合盒(ABC)转运蛋白(K01990、K02003和K06147),这些可以帮助维持藏狐的健康,使其能够生活在恶劣的栖息地。这些结果表明,赤狐和藏狐的肠道微生物群可能具有不同的能力,这可能为这些物种提供不同的适应不同生态位和栖息地的能力,从而为理解宿主适应不同生态位和栖息地的机制提供重要的微生物群数据。

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