School of Life Science, Yunnan Normal University, Kunming, China.
PLoS One. 2013;8(2):e56565. doi: 10.1371/journal.pone.0056565. Epub 2013 Feb 15.
The animal gastrointestinal tract contains a complex community of microbes, whose composition ultimately reflects the co-evolution of microorganisms with their animal host. An analysis of 78,619 pyrosequencing reads generated from pygmy loris fecal DNA extracts was performed to help better understand the microbial diversity and functional capacity of the pygmy loris gut microbiome. The taxonomic analysis of the metagenomic reads indicated that pygmy loris fecal microbiomes were dominated by Bacteroidetes and Proteobacteria phyla. The hierarchical clustering of several gastrointestinal metagenomes demonstrated the similarities of the microbial community structures of pygmy loris and mouse gut systems despite their differences in functional capacity. The comparative analysis of function classification revealed that the metagenome of the pygmy loris was characterized by an overrepresentation of those sequences involved in aromatic compound metabolism compared with humans and other animals. The key enzymes related to the benzoate degradation pathway were identified based on the Kyoto Encyclopedia of Genes and Genomes pathway assignment. These results would contribute to the limited body of primate metagenome studies and provide a framework for comparative metagenomic analysis between human and non-human primates, as well as a comparative understanding of the evolution of humans and their microbiome. However, future studies on the metagenome sequencing of pygmy loris and other prosimians regarding the effects of age, genetics, and environment on the composition and activity of the metagenomes are required.
动物胃肠道内存在着复杂的微生物群落,其组成最终反映了微生物与其动物宿主的共同进化。对来自侏长尾猴粪便 DNA 提取物的 78619 个焦磷酸测序reads 进行了分析,以帮助更好地了解侏长尾猴肠道微生物组的微生物多样性和功能能力。对宏基因组reads 的分类分析表明,侏长尾猴粪便微生物群主要由厚壁菌门和变形菌门组成。尽管在功能能力上存在差异,但几种胃肠道宏基因组的层次聚类显示出侏长尾猴和小鼠肠道系统微生物群落结构的相似性。功能分类的比较分析表明,与人类和其他动物相比,侏长尾猴的宏基因组中与芳香族化合物代谢相关的序列存在过度表达。基于京都基因与基因组百科全书(KEGG)途径分配,鉴定了与苯甲酸降解途径相关的关键酶。这些结果将有助于有限的灵长类动物宏基因组研究,并为人类和非人类灵长类动物之间的比较宏基因组分析以及人类及其微生物组进化的比较理解提供框架。然而,未来需要对侏长尾猴和其他原猴类的宏基因组测序进行研究,以了解年龄、遗传和环境对宏基因组组成和活性的影响。