The biology of thermoacidophilic archaea from the order Sulfolobales

Author:

Lewis April M1,Recalde Alejandra2ORCID,Bräsen Christopher3,Counts James A1,Nussbaum Phillip2,Bost Jan2,Schocke Larissa3,Shen Lu3,Willard Daniel J1,Quax Tessa E F4,Peeters Eveline5,Siebers Bettina3,Albers Sonja-Verena2,Kelly Robert M1ORCID

Affiliation:

1. Department of Chemical and Biomolecular Engineering, North Carolina State University. Raleigh, NC 27695, USA

2. Institute for Biology, Molecular Biology of Archaea, University of Freiburg, 79104 Freiburg, Germany

3. Department of Molecular Enzyme Technology and Biochemistry, Environmental Microbiology and Biotechnology, and Centre for Water and Environmental Research, University of Duisburg-Essen, 45117 Essen, Germany

4. Archaeal Virus–Host Interactions, Faculty of Biology, University of Freiburg, 79104 Freiburg, Germany

5. Research Group of Microbiology, Department of Bioengineering Sciences, Vrije Universiteit Brussel, 1050 Brussels, Belgium

Abstract

ABSTRACT Thermoacidophilic archaea belonging to the order Sulfolobales thrive in extreme biotopes, such as sulfuric hot springs and ore deposits. These microorganisms have been model systems for understanding life in extreme environments, as well as for probing the evolution of both molecular genetic processes and central metabolic pathways. Thermoacidophiles, such as the Sulfolobales, use typical microbial responses to persist in hot acid (e.g. motility, stress response, biofilm formation), albeit with some unusual twists. They also exhibit unique physiological features, including iron and sulfur chemolithoautotrophy, that differentiate them from much of the microbial world. Although first discovered >50 years ago, it was not until recently that genome sequence data and facile genetic tools have been developed for species in the Sulfolobales. These advances have not only opened up ways to further probe novel features of these microbes but also paved the way for their potential biotechnological applications. Discussed here are the nuances of the thermoacidophilic lifestyle of the Sulfolobales, including their evolutionary placement, cell biology, survival strategies, genetic tools, metabolic processes and physiological attributes together with how these characteristics make thermoacidophiles ideal platforms for specialized industrial processes.

Funder

AFOSR

National Science Foundation

National Institutes of Health

Deutsche Forschungsgemeinschaft

Federal Ministry of Education and Research

Mercator Foundation

MERCUR

Publisher

Oxford University Press (OUP)

Subject

Infectious Diseases,Microbiology

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