Co-occurrence network analysis of biogas reactor microbiomes based on metagenomics sequencing data

Metagenome sequencing makes it possible to capture microbial communities in their diversity, to investigate population structures and evolutionary relationships, and to predict metabolic functions and interactions within the microbial community and with the environment. Metagenomics thus, significan...

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Autor principal: Huan, Youwei
Formato: Second cycle, A2E
Lenguaje:sueco
Inglés
Publicado: 2020
Materias:
Acceso en línea:https://stud.epsilon.slu.se/16262/
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author Huan, Youwei
author_browse Huan, Youwei
author_facet Huan, Youwei
author_sort Huan, Youwei
collection Epsilon Archive for Student Projects
description Metagenome sequencing makes it possible to capture microbial communities in their diversity, to investigate population structures and evolutionary relationships, and to predict metabolic functions and interactions within the microbial community and with the environment. Metagenomics thus, significantly expands the research scope of microbiology. Compared with 16S sequencing, metagenome sequencing can get more information of species identification, and in-depth research on gene and function. Metagenome-assembled genomes (MAGs) retrieved from metagenomics data of 20 AD biogas reactors and the respective Illumina sequencing reads were used to create an abundance table and conduct co-occurrence network analysis. A feasible method was designed for making OTU table and network analysis of metagenomics data and some potential clusters were found may connected to the food chain in microbial community.
format Second cycle, A2E
id RepoSLU16262
institution Swedish University of Agricultural Sciences
language Swedish
Inglés
publishDate 2020
publishDateSort 2020
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spelling RepoSLU162622020-11-14T02:00:34Z https://stud.epsilon.slu.se/16262/ Co-occurrence network analysis of biogas reactor microbiomes based on metagenomics sequencing data Huan, Youwei Animal genetics and breeding Metagenome sequencing makes it possible to capture microbial communities in their diversity, to investigate population structures and evolutionary relationships, and to predict metabolic functions and interactions within the microbial community and with the environment. Metagenomics thus, significantly expands the research scope of microbiology. Compared with 16S sequencing, metagenome sequencing can get more information of species identification, and in-depth research on gene and function. Metagenome-assembled genomes (MAGs) retrieved from metagenomics data of 20 AD biogas reactors and the respective Illumina sequencing reads were used to create an abundance table and conduct co-occurrence network analysis. A feasible method was designed for making OTU table and network analysis of metagenomics data and some potential clusters were found may connected to the food chain in microbial community. 2020-10-29 Second cycle, A2E NonPeerReviewed application/pdf sv https://stud.epsilon.slu.se/16262/3/huan_y_201113.pdf Huan, Youwei, 2020. Co-occurrence network analysis of biogas reactor microbiomes based on metagenomics sequencing data. Second cycle, A2E. Uppsala: (VH) > Dept. of Animal Breeding and Genetics (until 231231) <https://stud.epsilon.slu.se/view/divisions/OID-670.html> urn:nbn:se:slu:epsilon-s-16262 eng
spellingShingle Animal genetics and breeding
Huan, Youwei
Co-occurrence network analysis of biogas reactor microbiomes based on metagenomics sequencing data
title Co-occurrence network analysis of biogas reactor microbiomes based on metagenomics sequencing data
title_full Co-occurrence network analysis of biogas reactor microbiomes based on metagenomics sequencing data
title_fullStr Co-occurrence network analysis of biogas reactor microbiomes based on metagenomics sequencing data
title_full_unstemmed Co-occurrence network analysis of biogas reactor microbiomes based on metagenomics sequencing data
title_short Co-occurrence network analysis of biogas reactor microbiomes based on metagenomics sequencing data
title_sort co-occurrence network analysis of biogas reactor microbiomes based on metagenomics sequencing data
topic Animal genetics and breeding
url https://stud.epsilon.slu.se/16262/
https://stud.epsilon.slu.se/16262/