Institute of Forest Ecology-Environment and Nature Conservation, Chinese Academy of Forestry, Beijing, China.
Beijing Museum of Natural History, Beijing, China.
PeerJ. 2022 Jun 8;10:e13527. doi: 10.7717/peerj.13527. eCollection 2022.
The Hainan gibbon is one of the most endangered primates in the world, with a small population size, narrow distribution range, and high inbreeding risk, which retains the risk of species extinction. To explore the composition and functional differences of the intestinal microbiome of Hainan gibbons at different ages, the faecal microbiomes of young and adult Hainan gibbons were analysed using metagenome sequencing. The results showed that the dominant phyla in the intestinal tract of young and adult Hainan gibbons were Firmicutes and Bacteroidetes, and the dominant genus was . Linear discriminant analysis effect size analysis showed that Firmicutes, , , and were significantly more abundant in adults than in young, whereas Bacteroidetes, Proteobacteria, , and were significantly more abundant in young than in adults. In terms of gene function, the adult Hainan gibbon intestinal microbiome generally harboured a higher abundance of genes related to metabolic processes, such as carbohydrate, amino acid, and nucleotide metabolism. This may be due to adaptive advantages for adult Hainan gibbons, such as stable and mature intestinal microbiome composition, which allows them to utilise diverse foods efficiently. In summary, this study helps understand the dynamic changes in the intestinal microbiome of young and adult Hainan gibbons and plays a key role in the health monitoring and rejuvenation of their population.
海南长臂猿是世界上最濒危的灵长类动物之一,种群数量小,分布范围狭窄,近亲繁殖风险高,保留着物种灭绝的风险。为了探究不同年龄海南长臂猿肠道微生物组的组成和功能差异,本研究使用宏基因组测序分析了幼年和成年海南长臂猿的粪便微生物组。结果表明,幼年和成年海南长臂猿肠道中的优势菌门为厚壁菌门和拟杆菌门,优势属为 。线性判别分析效应量分析显示,与幼年个体相比,成年个体中厚壁菌门、、、丰度显著更高,而拟杆菌门、变形菌门、、丰度显著更高。在基因功能方面,成年海南长臂猿肠道微生物组通常具有更高丰度的与代谢过程相关的基因,如碳水化合物、氨基酸和核苷酸代谢。这可能是由于成年海南长臂猿具有稳定成熟的肠道微生物组组成,使其能够有效地利用多样化的食物,从而具有适应性优势。总之,本研究有助于了解幼年和成年海南长臂猿肠道微生物组的动态变化,并对其种群的健康监测和复壮具有关键作用。