Literature DB >> 24108330

Gene-targeted metagenomic analysis of glucan-branching enzyme gene profiles among human and animal fecal microbiota.

Sunghee Lee1, Brandi Cantarel2, Bernard Henrissat3, Dirk Gevers4, Bruce W Birren4, Curtis Huttenhower4,5, GwangPyo Ko6.   

Abstract

Glycoside hydrolases (GHs), the enzymes that breakdown complex carbohydrates, are a highly diversified class of key enzymes associated with the gut microbiota and its metabolic functions. To learn more about the diversity of GHs and their potential role in a variety of gut microbiomes, we used a combination of 16S, metagenomic and targeted amplicon sequencing data to study one of these enzyme families in detail. Specifically, we employed a functional gene-targeted metagenomic approach to the 1-4-α-glucan-branching enzyme (gBE) gene in the gut microbiomes of four host species (human, chicken, cow and pig). The characteristics of operational taxonomic units (OTUs) and operational glucan-branching units (OGBUs) were distinctive in each of hosts. Human and pig were most similar in OTUs profiles while maintaining distinct OGBU profiles. Interestingly, the phylogenetic profiles identified from 16S and gBE gene sequences differed, suggesting the presence of different gBE genes in the same OTU across different vertebrate hosts. Our data suggest that gene-targeted metagenomic analysis is useful for an in-depth understanding of the diversity of a particular gene of interest. Specific carbohydrate metabolic genes appear to be carried by distinct OTUs in different individual hosts and among different vertebrate species' microbiomes, the characteristics of which differ according to host genetic background and/or diet.

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Year:  2013        PMID: 24108330      PMCID: PMC3930310          DOI: 10.1038/ismej.2013.167

Source DB:  PubMed          Journal:  ISME J        ISSN: 1751-7362            Impact factor:   10.302


  54 in total

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4.  Dividing the large glycoside hydrolase family 13 into subfamilies: towards improved functional annotations of alpha-amylase-related proteins.

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Review 3.  Recent progress in the structure of glycogen serving as a durable energy reserve in bacteria.

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4.  Carbohydrate metabolism genes dominant in a subtropical marine mangrove ecosystem revealed by metagenomics analysis.

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Review 5.  Biodegradation of plastics: mining of plastic-degrading microorganisms and enzymes using metagenomics approaches.

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6.  Identification and classification of reverse transcriptases in bacterial genomes and metagenomes.

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Review 7.  Synthetic biology approaches to improve biocatalyst identification in metagenomic library screening.

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Review 8.  Beyond 16S rRNA Community Profiling: Intra-Species Diversity in the Gut Microbiota.

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10.  Metagenomic reconstructions of gut microbial metabolism in weanling pigs.

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