Li Xinru, Lu Haiyan
Department of Anorectal Surgery, Changsha Hospital of Traditional Chinese Medicine (Changsha Eighth Hospital), Changsha, China.
Department of Anorectal Surgery, The Second Affiliated Hospital of Hunan University of Chinese Medicine, Changsha, China.
Front Microbiol. 2025 Aug 26;16:1626002. doi: 10.3389/fmicb.2025.1626002. eCollection 2025.
The human gastrointestinal tract (GIT) is inhabited by a heterogeneous and dynamic microbial community that influences host health at multiple levels both metabolically, immunologically and via neurological pathways. Though the gut microbiota-overwhelmingly and -has essential functions in nutrient metabolism, immune regulation, and resistance to pathogens, its dysbiosis is likewise associated with pathologies, such as inflammatory bowel disease (IBD), obesity, type 2 diabetes (T2D), and neurodegenerative diseases. While conventional metagenomic techniques laid the groundwork for understanding microbial composition, next-generation enhanced metagenomic techniques permit an unprecedented resolution in exploring the functional and spatial complexity of gut communities. Advanced frameworks such as high-throughput sequencing, bioinformatic and multi-omics technologies are expanding the understanding of microbial gene regulation, metagenomic pathways, and host-microbe communication. Beyond taxonomic profiling, they map niche-specific activities of gut microbiota along a dichotomy of facultative mutualism, evidenced by relations of beneficial symbionts, represented here by . In this review, we critically consider the latest approaches (e.g., long-read sequencing, single-cell metagenomics and AI-guided annotation) that mitigate biases stemming from DNA extraction, sequencing depth and functional inference.
人类胃肠道(GIT)中栖息着一个异质性且动态变化的微生物群落,该群落通过代谢、免疫以及神经通路等多个层面影响宿主健康。尽管肠道微生物群在营养代谢、免疫调节和抵抗病原体方面具有压倒性且至关重要的功能,但其生态失调同样与多种病症相关,如炎症性肠病(IBD)、肥胖症、2型糖尿病(T2D)以及神经退行性疾病。虽然传统宏基因组技术为理解微生物组成奠定了基础,但新一代增强宏基因组技术在探索肠道群落的功能和空间复杂性方面实现了前所未有的分辨率。诸如高通量测序、生物信息学和多组学技术等先进框架正在拓展我们对微生物基因调控、宏基因组途径以及宿主-微生物相互作用的理解。除了分类学分析之外,它们沿着兼性共生的二分法描绘肠道微生物群的特定生态位活动,这通过有益共生体的关系得以证明,此处以 表示。在本综述中,我们批判性地审视了最新方法(例如长读长测序、单细胞宏基因组学和人工智能引导注释),这些方法可减轻因DNA提取、测序深度和功能推断产生的偏差。