» Articles » PMID: 25764466

Ecology and Biotechnological Potential of the Thermophilic Fermentative Coprothermobacter Spp

Overview
Date 2015 Mar 13
PMID 25764466
Citations 15
Authors
Affiliations
Soon will be listed here.
Abstract

Thermophilic bacteria have been isolated from several terrestrial, marine and industrial environments. Anaerobic digesters treating organic wastes are often an important source of these microorganisms, which catalyze a wide array of metabolic processes. Moreover, organic wastes are primarily composed of proteins, whose degradation is often incomplete. Coprothermobacter spp. are proteolytic anaerobic thermophilic microbes identified in several studies focused on the analysis of the microbial community structure in anaerobic thermophilic reactors. They are currently classified in the phylum Firmicutes; nevertheless, several authors showed that the Coprothermobacter group is most closely related to the phyla Dictyoglomi and Thermotoga. Since only a few proteolytic anaerobic thermophiles have been characterized so far, this microorganism has attracted the attention of researchers for its potential applications with high-temperature environments. In addition to proteolysis, Coprothermobacter spp. showed several metabolic abilities and may have a biotechnological application either as source of thermostable enzymes or as inoculum in anaerobic processes. Moreover, they can improve protein degradation by establishing a syntrophy with hydrogenotrophic archaea. To gain a better understanding of the phylogenesis, metabolic capabilities and adaptations of these microorganisms, it is of importance to better define the role in thermophilic environments and to disclose properties not yet investigated.

Citing Articles

Microplastics Biodegradation by Estuarine and Landfill Microbiomes.

Pires C, Costa L, Barbosa S, Sequeira J, Cachetas D, Freitas J Microb Ecol. 2024; 87(1):88.

PMID: 38943017 PMC: 11213754. DOI: 10.1007/s00248-024-02399-8.


Microbiome dynamics and products profiles of biowaste fermentation under different organic loads and additives.

Zhu X, Li P, Ju F Eng Life Sci. 2024; 24(5):2300216.

PMID: 38708413 PMC: 11065332. DOI: 10.1002/elsc.202300216.


Comparison of Thermophilic-Mesophilic and Mesophilic-Thermophilic Two-Phase High-Solid Sludge Anaerobic Digestion at Different Inoculation Proportions: Digestion Performance and Microbial Diversity.

Wang T, Wang J, Pu J, Bai C, Peng C, Shi H Microorganisms. 2023; 11(10).

PMID: 37894067 PMC: 10608829. DOI: 10.3390/microorganisms11102409.


Identification of a deep-branching thermophilic clade sheds light on early bacterial evolution.

Leng H, Wang Y, Zhao W, Sievert S, Xiao X Nat Commun. 2023; 14(1):4354.

PMID: 37468486 PMC: 10356935. DOI: 10.1038/s41467-023-39960-x.


Composition and role of the attached and planktonic microbial communities in mesophilic and thermophilic xylose-fed microbial fuel cells.

Dessi P, Porca E, Haavisto J, Lakaniemi A, Collins G, Lens P RSC Adv. 2022; 8(6):3069-3080.

PMID: 35541202 PMC: 9077550. DOI: 10.1039/c7ra12316g.