An Initial Proteomic Analysis of Biogas-Related Metabolism of Euryarchaeota Consortia in Sediments from the Santiago River, México

Author:

Barrera-Rojas Jesús1ORCID,Gurubel-Tun Kelly Joel1ORCID,Ríos-Castro Emmanuel2ORCID,López-Méndez María Cristina3,Sulbarán-Rangel Belkis1ORCID

Affiliation:

1. Department of Water and Energy, Campus Tonalá, University of Guadalajara, Tonalá 45425, Mexico

2. Laboratorios Nacionales de Servicios Experimentales, Centro de Investigación y Estudios Avanzados del IPN, Ciudad de México 07000, Mexico

3. Wetlands and Environmental Sustainability Laboratory, Division of Graduate Studies and Research, Tecnológico Nacional de México/ITS de Misantla, Veracruz 93850, Mexico

Abstract

In this paper, sediments from the Santiago River were characterized to look for an alternative source of inoculum for biogas production. A proteomic analysis of methane-processing archaea present in these sediments was carried out. The Euryarchaeota superkingdom of archaea is responsible for methane production and methane assimilation in the environment. The Santiago River is a major river in México with great pollution and exceeded recovery capacity. Its sediments could contain nutrients and the anaerobic conditions for optimal growth of Euryarchaeota consortia. Batch bioreactor experiments were performed, and a proteomic analysis was conducted with current database information. The maximum biogas production was 266 NmL·L−1·g VS−1, with 33.34% of methane, and for proteomics, 3206 proteins were detected from 303 species of 69 genera. Most of them are metabolically versatile members of the genera Methanosarcina and Methanosarcinales, both with 934 and 260 proteins, respectively. These results showed a diverse euryarcheotic species with high potential to methane production. Although related proteins were found and could be feeding this metabolism through the methanol and acetyl-CoA pathways, the quality obtained from the biogas suggests that this metabolism is not the main one in carbon use, possibly the sum of several conditions including growth conditions and the pollution present in these sediments

Funder

CONAHCyT postdoctoral grant

PROSNI program of Guadalajara University

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

Reference72 articles.

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2. Surface water quality in the upstream of the highly contaminated Santiago River (Mexico) during the COVID-19 lockdown;Roy;Environ. Earth Sci.,2022

3. Instituto de Información Estadística y Geográfica de Jalisco (2022). Análisis Áreas Metropolitanas de Jalisco, Instituto de Información Estadística y Geográfica de Jalisco.

4. Buccal micronucleus cytome assay of populations under chronic heavy metal and other metal exposure along the Santiago River, Mexico;Environ. Monit. Assess.,2017

5. Use of Comet Assay in Human Lymphocytes as a Molecular Biomarker for Simultaneous Monitoring of Genetic Damage and Genotoxicity in Residents Who Lived Nearby the Santiago River, Mexico, in 2012;Global J. Biotechnol. Biomater. Sci.,2015

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