Literature DB >> 33241850

Halophilic archaea and their potential to generate renewable fuels and chemicals.

Lakshmi Kasirajan1,2, Julie A Maupin-Furlow1,3.   

Abstract

Lignocellulosic biofuels and chemicals have great potential to reduce our dependence on fossil fuels and mitigate air pollution by cutting down on greenhouse gas emissions. Chemical, thermal, and enzymatic processes are used to release the sugars from the lignocellulosic biomass for conversion to biofuels. These processes often operate at extreme pH conditions, high salt concentrations, and/or high temperature. These harsh treatments add to the cost of the biofuels, as most known biocatalysts do not operate under these conditions. To increase the economic feasibility of biofuel production, microorganisms that thrive in extreme conditions are considered as ideal resources to generate biofuels and value-added products. Halophilic archaea (haloarchaea) are isolated from hypersaline ecosystems with high salt concentrations approaching saturation (1.5-5 M salt concentration) including environments with extremes in pH and/or temperature. The unique traits of haloarchaea and their enzymes that enable them to sustain catalytic activity in these environments make them attractive resources for use in bioconversion processes that must occur across a wide range of industrial conditions. Biocatalysts (enzymes) derived from haloarchaea occupy a unique niche in organic solvent, salt-based, and detergent industries. This review focuses on the use of haloarchaea and their enzymes to develop and improve biofuel production. The review also highlights how haloarchaea produce value-added products, such as antibiotics, carotenoids, and bioplastic precursors, and can do so using feedstocks considered "too salty" for most microbial processes including wastes from the olive-mill, shell fish, and biodiesel industries.
© 2020 Wiley Periodicals LLC.

Entities:  

Keywords:  biocompounds; biodiesel; extremophiles; hydrolytic enzymes; lignocellulose; saccharification

Mesh:

Substances:

Year:  2020        PMID: 33241850      PMCID: PMC7897274          DOI: 10.1002/bit.27639

Source DB:  PubMed          Journal:  Biotechnol Bioeng        ISSN: 0006-3592            Impact factor:   4.530


  196 in total

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  4 in total

1.  High-level synthesis and secretion of laccase, a metalloenzyme biocatalyst, by the halophilic archaeon Haloferax volcanii.

Authors:  Lakshmi Kasirajan; Zachary Adams; Ricardo L Couto-Rodriguez; Daniel Gal; Huiyong Jia; Paula Mondragon; Paul C Wassel; David Yu; Sivakumar Uthandi; Julie A Maupin-Furlow
Journal:  Methods Enzymol       Date:  2021-07-27       Impact factor: 1.682

2.  Characterization, optimization, and evaluation of preservative efficacy of carboxymethyl cellulose/hydromagnesite stromatolite bio-nanocomposite.

Authors:  Selcan Karakuş; Mert Akın Insel; İbrahim Mizan Kahyaoğlu; İnci Albayrak; Fulya Ustun-Alkan
Journal:  Cellulose (Lond)       Date:  2022-03-22       Impact factor: 6.123

Review 3.  Industrial Biotechnology Based on Enzymes From Extreme Environments.

Authors:  Noha M Mesbah
Journal:  Front Bioeng Biotechnol       Date:  2022-04-05

Review 4.  Hypersaline environments as natural sources of microbes with potential applications in biotechnology: The case of solar evaporation systems to produce salt in Alicante County (Spain).

Authors:  Guillermo Martínez Martínez; Carmen Pire; Rosa María Martínez-Espinosa
Journal:  Curr Res Microb Sci       Date:  2022-04-26
  4 in total

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