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Energy-saving pretreatments affect pelagic Sargassum composition and DNA metabarcoding reveals the microbial community involved in methane yield

Sargassum spp. flood the Caribbean coastline, causing damage to the local economy and environment. Anaerobic digestion (AD) has been proposed as an attractive option for turning macroalgae into valuable resources. Sargassum spp. has a complex composition that affects the microbial composition involv...

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Autores principales: Salgado-Hernández, Enrique, Ortiz-Ceballos, Ángel Isauro, Alvarado-Lassman, Alejandro, Martínez-Hernández, Sergio, Rosas-Mendoza, Erik Samuel, Velázquez-Fernández, Jesús Bernardino, Dorantes-Acosta, Ana Elena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10434912/
https://www.ncbi.nlm.nih.gov/pubmed/37590200
http://dx.doi.org/10.1371/journal.pone.0289972
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author Salgado-Hernández, Enrique
Ortiz-Ceballos, Ángel Isauro
Alvarado-Lassman, Alejandro
Martínez-Hernández, Sergio
Rosas-Mendoza, Erik Samuel
Velázquez-Fernández, Jesús Bernardino
Dorantes-Acosta, Ana Elena
author_facet Salgado-Hernández, Enrique
Ortiz-Ceballos, Ángel Isauro
Alvarado-Lassman, Alejandro
Martínez-Hernández, Sergio
Rosas-Mendoza, Erik Samuel
Velázquez-Fernández, Jesús Bernardino
Dorantes-Acosta, Ana Elena
author_sort Salgado-Hernández, Enrique
collection PubMed
description Sargassum spp. flood the Caribbean coastline, causing damage to the local economy and environment. Anaerobic digestion (AD) has been proposed as an attractive option for turning macroalgae into valuable resources. Sargassum spp. has a complex composition that affects the microbial composition involved in AD which generates a low methane yield. This study aimed to improve the methane yield of pelagic Sargassum, using different energy-saving pretreatments and identifying the microbial community associated with methane production. We applied different energy-saving pretreatments to algal biomass and assessed the methane yield using a biomethane potential (BMP) test. The microbial communities involved in the AD of the best- and worst-performing methanogenic systems were analyzed by high-throughput sequencing. The results showed that pretreatment modified the content of inorganic compounds, fibers, and the C:N ratio, which had a strong positive correlation with BMP. The water washing pretreatment resulted in the best methane yield, with an increase of 38%. DNA metabarcoding analysis revealed that the bacterial genera Marinilabiliaceae_uncultured, DMER64, Treponema, and Hydrogenispora, as well as the archaea genera Methanosarcina, RumEn_M2, Bathyarchaeia, and Methanomassiliicocus, dominated the microbial community with a high methane yield. This study is the first to demonstrate the microbial community structure involved in the AD of Sargassum spp. The pretreatments presented in this study can help overcome the limitations associated with methane yield.
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spelling pubmed-104349122023-08-18 Energy-saving pretreatments affect pelagic Sargassum composition and DNA metabarcoding reveals the microbial community involved in methane yield Salgado-Hernández, Enrique Ortiz-Ceballos, Ángel Isauro Alvarado-Lassman, Alejandro Martínez-Hernández, Sergio Rosas-Mendoza, Erik Samuel Velázquez-Fernández, Jesús Bernardino Dorantes-Acosta, Ana Elena PLoS One Research Article Sargassum spp. flood the Caribbean coastline, causing damage to the local economy and environment. Anaerobic digestion (AD) has been proposed as an attractive option for turning macroalgae into valuable resources. Sargassum spp. has a complex composition that affects the microbial composition involved in AD which generates a low methane yield. This study aimed to improve the methane yield of pelagic Sargassum, using different energy-saving pretreatments and identifying the microbial community associated with methane production. We applied different energy-saving pretreatments to algal biomass and assessed the methane yield using a biomethane potential (BMP) test. The microbial communities involved in the AD of the best- and worst-performing methanogenic systems were analyzed by high-throughput sequencing. The results showed that pretreatment modified the content of inorganic compounds, fibers, and the C:N ratio, which had a strong positive correlation with BMP. The water washing pretreatment resulted in the best methane yield, with an increase of 38%. DNA metabarcoding analysis revealed that the bacterial genera Marinilabiliaceae_uncultured, DMER64, Treponema, and Hydrogenispora, as well as the archaea genera Methanosarcina, RumEn_M2, Bathyarchaeia, and Methanomassiliicocus, dominated the microbial community with a high methane yield. This study is the first to demonstrate the microbial community structure involved in the AD of Sargassum spp. The pretreatments presented in this study can help overcome the limitations associated with methane yield. Public Library of Science 2023-08-17 /pmc/articles/PMC10434912/ /pubmed/37590200 http://dx.doi.org/10.1371/journal.pone.0289972 Text en © 2023 Salgado-Hernández et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Salgado-Hernández, Enrique
Ortiz-Ceballos, Ángel Isauro
Alvarado-Lassman, Alejandro
Martínez-Hernández, Sergio
Rosas-Mendoza, Erik Samuel
Velázquez-Fernández, Jesús Bernardino
Dorantes-Acosta, Ana Elena
Energy-saving pretreatments affect pelagic Sargassum composition and DNA metabarcoding reveals the microbial community involved in methane yield
title Energy-saving pretreatments affect pelagic Sargassum composition and DNA metabarcoding reveals the microbial community involved in methane yield
title_full Energy-saving pretreatments affect pelagic Sargassum composition and DNA metabarcoding reveals the microbial community involved in methane yield
title_fullStr Energy-saving pretreatments affect pelagic Sargassum composition and DNA metabarcoding reveals the microbial community involved in methane yield
title_full_unstemmed Energy-saving pretreatments affect pelagic Sargassum composition and DNA metabarcoding reveals the microbial community involved in methane yield
title_short Energy-saving pretreatments affect pelagic Sargassum composition and DNA metabarcoding reveals the microbial community involved in methane yield
title_sort energy-saving pretreatments affect pelagic sargassum composition and dna metabarcoding reveals the microbial community involved in methane yield
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10434912/
https://www.ncbi.nlm.nih.gov/pubmed/37590200
http://dx.doi.org/10.1371/journal.pone.0289972
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