整合功能元基因组学,破译微生物与免疫之间的相互作用。

IF 3.2 4区 医学 Q3 CELL BIOLOGY
Puspendu Sardar, Alexandre Almeida, Virginia A Pedicord
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引用次数: 0

摘要

微生物代谢产物可被视为微生物群的细胞因子,传递有关肠道微生物和代谢环境的信息,从而协调和调节局部和全身免疫反应。然而,许多免疫学研究只关注肠道微生物群的分类和群落结构,而不是其功能。早期以测序为基础的微生物群分析方法依赖于细菌和真菌基因组小区域的 PCR 扩增,以促进对存在的微生物的鉴定。然而,最近的微生物组分析方法,尤其是枪式元基因组测序法,现在除了分类学特征描述外,还能对微生物组的功能和代谢物进行不依赖培养的分析。在这篇综述中,我们展示了功能元基因组学方法和应用的最新进展,并讨论了目前的局限性和未来发展的潜在途径。重要的是,我们强调了免疫学研究中一些关键领域的例子,在这些领域中,整合微生物组的功能元基因组分析可大大提高对微生物组-免疫相互作用及其对健康和疾病状态的贡献的机理认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Integrating functional metagenomics to decipher microbiome–immune interactions

Integrating functional metagenomics to decipher microbiome–immune interactions

Microbial metabolites can be viewed as the cytokines of the microbiome, transmitting information about the microbial and metabolic environment of the gut to orchestrate and modulate local and systemic immune responses. Still, many immunology studies focus solely on the taxonomy and community structure of the gut microbiota rather than its functions. Early sequencing-based microbiota profiling approaches relied on PCR amplification of small regions of bacterial and fungal genomes to facilitate identification of the microbes present. However, recent microbiome analysis methods, particularly shotgun metagenomic sequencing, now enable culture-independent profiling of microbiome functions and metabolites in addition to taxonomic characterization. In this review, we showcase recent advances in functional metagenomics methods and applications and discuss the current limitations and potential avenues for future development. Importantly, we highlight a few examples of key areas of opportunity in immunology research where integrating functional metagenomic analyses of the microbiome can substantially enhance a mechanistic understanding of microbiome–immune interactions and their contributions to health and disease states.

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来源期刊
Immunology & Cell Biology
Immunology & Cell Biology 医学-免疫学
CiteScore
7.50
自引率
2.50%
发文量
98
审稿时长
4-8 weeks
期刊介绍: The Australasian Society for Immunology Incorporated (ASI) was created by the amalgamation in 1991 of the Australian Society for Immunology, formed in 1970, and the New Zealand Society for Immunology, formed in 1975. The aim of the Society is to encourage and support the discipline of immunology in the Australasian region. It is a broadly based Society, embracing clinical and experimental, cellular and molecular immunology in humans and animals. The Society provides a network for the exchange of information and for collaboration within Australia, New Zealand and overseas. ASI members have been prominent in advancing biological and medical research worldwide. We seek to encourage the study of immunology in Australia and New Zealand and are active in introducing young scientists to the discipline.
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