School of Ecology and Nature Conservation, Beijing Forestry University, Beijing, China.
Xinjiang Mountain Ungulate Nature Reserve Management Center, Urumqi, China.
Integr Zool. 2023 Nov;18(6):1027-1040. doi: 10.1111/1749-4877.12699. Epub 2023 Jan 6.
Host-associated microbiota can significantly impact host fitness. Therefore, naturally occurring variations in microbiota may influence the health and persistence of their hosts. This finding is particularly important in reintroduced animals, as they typically experience habitat changes during translocations. However, little is known about how microbiomes are altered in response to conservation translocation. Here, we accessed the gut microbiome of Przewalski's horse (Equus przewalskii) populations in China from three nature reserves (i.e. Xinjiang Kalamaili Nature Reserve, KNR; Dunhuang Xihu National Nature Reserve, DXNNR; and Anxi Extreme-arid Desert Nature Reserve, AENR) using 16s rRNA gene and metagenome sequencing. The results showed that the microbial composition and function differed significantly across locations, while a subset of core taxa was consistently present in most of the samples. The abundance of genes encoding microbe-produced enzymes involved in the metabolism of carbohydrates, especially for glycoside hydrolases, was significantly higher in open-spaced KNR populations than in more confined AENR individuals. This study offers detailed and significant differential characters related to the microbial community and metabolic pathways in various reintroduced sites of Przewalski's horse, which might provide a basis for future microecological and conservation research on endangered reintroduced animals.
宿主相关的微生物群落可以显著影响宿主的适应性。因此,微生物群落中自然发生的变异可能会影响宿主的健康和存续。这一发现对于重新引入的动物尤为重要,因为它们在迁徙过程中通常会经历栖息地的变化。然而,对于微生物组如何响应保护迁徙而发生变化,我们知之甚少。在这里,我们通过 16s rRNA 基因和宏基因组测序,从中国的三个自然保护区(即新疆卡拉麦里自然保护区(KNR)、敦煌西湖国家自然保护区(DXNNR)和安西极端干旱沙漠自然保护区(AENR))获取了普氏野马(Equus przewalskii)种群的肠道微生物组。结果表明,微生物组成和功能在不同地点存在显著差异,而一组核心分类群在大多数样本中始终存在。编码微生物产生的参与碳水化合物代谢的酶的基因(尤其是糖苷水解酶)的丰度在开阔空间的 KNR 种群中明显高于更局限的 AENR 个体。本研究提供了与普氏野马不同再引入地点微生物群落和代谢途径相关的详细而显著的差异特征,这可能为濒危再引入动物的未来微生态学和保护研究提供基础。