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参与者如何发挥作用?一种用于理解水生生态系统过程的后基因组分析范式。

How Do the Players Play? A Post-Genomic Analysis Paradigm to Understand Aquatic Ecosystem Processes.

作者信息

Reid Thomas, Bergsveinson Jordyn

机构信息

Canada Centre for Inland Waters, Environment and Climate Change Canada, Burlington, ON, Canada.

National Hydrology Research Centre, Environment and Climate Change Canada, Saskatoon, SK, Canada.

出版信息

Front Mol Biosci. 2021 May 7;8:662888. doi: 10.3389/fmolb.2021.662888. eCollection 2021.

Abstract

Culture-independent and -omics sequencing methods have shed considerable light on the so-called "microbial dark matter" of Earth's environmental microbiome, improving our understanding of phylogeny, the tree of life, and the vast functional diversity of microorganisms. This influx of sequence data has led to refined and reimagined hypotheses about the role and importance of microbial biomass, that paradoxically, sequencing approaches alone are unable to effectively test. Post-genomic approaches such as metabolomics are providing more sensitive and insightful data to unravel the fundamental operations and intricacies of microbial communities within aquatic systems. We assert that the implementation of integrated post-genomic approaches, specifically metabolomics and metatranscriptomics, is the new frontier of environmental microbiology and ecology, expanding conventional assessments toward a holistic systems biology understanding. Progressing beyond siloed phylogenetic assessments and cataloging of metabolites, toward integrated analysis of expression (metatranscriptomics) and activity (metabolomics) is the most effective approach to provide true insight into microbial contributions toward local and global ecosystem functions. This data in turn creates opportunity for improved regulatory guidelines, biomarker discovery and better integration of modeling frameworks. To that end, critical aquatic environmental issues related to climate change, such as ocean warming and acidification, contamination mitigation, and macro-organism health have reasonable opportunity of being addressed through such an integrative approach. Lastly, we argue that the "post-genomics" paradigm is well served to proactively address the systemic technical issues experienced throughout the genomics revolution and focus on collaborative assessment of field-wide experimental standards of sampling, bioinformatics and statistical treatments.

摘要

不依赖培养和组学测序方法为地球环境微生物组所谓的“微生物暗物质”带来了相当多的认识,增进了我们对系统发育、生命之树以及微生物巨大功能多样性的理解。这些序列数据的涌入催生了关于微生物生物量的作用和重要性的更完善且全新的假设,而矛盾的是,仅靠测序方法无法有效验证这些假设。代谢组学等后基因组方法正在提供更灵敏且有洞察力的数据,以揭示水生系统中微生物群落的基本运作和复杂性。我们断言,实施综合后基因组方法,特别是代谢组学和宏转录组学,是环境微生物学和生态学的新前沿,将传统评估扩展到对整体系统生物学的理解。超越孤立的系统发育评估和代谢物编目,朝着对表达(宏转录组学)和活性(代谢组学)的综合分析迈进,是真正洞察微生物对局部和全球生态系统功能贡献的最有效方法。这些数据反过来为改进监管指南、发现生物标志物以及更好地整合建模框架创造了机会。为此,与气候变化相关的关键水生环境问题,如海洋变暖和酸化、污染缓解以及大型生物健康,有合理的机会通过这种综合方法得到解决。最后,我们认为“后基因组学”范式有助于积极解决基因组学革命过程中遇到的系统性技术问题,并专注于对采样、生物信息学和统计处理等全领域实验标准的协作评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8838/8138469/89c30c4dd034/fmolb-08-662888-g001.jpg

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