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首页> 外文期刊>Review in aquaculture >Predictive functional profiles using metagenomic 16S rRNA data: a novel approach to understanding the microbial ecology of aquaculture systems
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Predictive functional profiles using metagenomic 16S rRNA data: a novel approach to understanding the microbial ecology of aquaculture systems

机译:使用Metagenomic 16S RRNA数据预测功能谱:理解水产养殖系统微生物生态的新方法

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摘要

Micro-organisms are an essential component of natural marine ecosystems, but also play important roles in anthropogenically modified ecosystems, including aquaculture. Although metagenomics is currently used to explore microbial communities, its application has not been as extensive in aquaculture. Although some taxonomic profiles and phylogenetic studies have been deciphered using biomarker genes, the functional potential of microbial communities associated with aquaculture systems is still unknown in most cases. Predicting functional profiles through 16S rRNA gene-based metagenomics analysis is perhaps the most promising tool to elucidate the metabolic capabilities of microbial communities because there is no need to perform shotgun sequencing to have an idea of these capabilities. Moreover, robust bioinformatics background is not required to assess this information, and so the same data (16S rRNA sequences) are used to estimate both taxonomic and functional profiles, therefore providing deeper insights into these kinds of communities. In this review, we suggest the need to major use of novel bioinformatics tools that construct functional profiles from metagenomic 16S rRNA data, as strategy to obtain a preliminary approach about metabolic capacities of microbes that coexist in aquaculture systems.
机译:微生物是天然海洋生态系统的重要组成部分,而且还在包括水产养殖中的人为改性生态系统中起重要作用。虽然偏心组合目前用于探索微生物社区,但其应用尚未在水产养殖中广泛。尽管使用生物标志物基因破坏了一些分类分类型和系统发育研究,但在大多数情况下,与水产养殖系统相关的微生物社区的功能潜力仍然未知。通过16S rRNA基因的血瘤分析预测功能性谱可能是最有前途的工具,以阐明微生物社区的代谢能力,因为没有必要进行霰弹枪测序以了解这些能力。此外,鲁棒的生物信息学背景不需要评估该信息,因此使用相同的数据(16S rRNA序列)来估计分类学和功能性概况,因此对这些社区的更深入的见解。在本文中,我们建议需要重大使用新的生物信息学工具,该工具构建来自Metagenomic 16S RRNA数据的功能性谱,作为获得在水产养殖系统中共存的微生物的代谢能力的初步方法的策略。

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