The archaeal class Halobacteria and astrobiology: Knowledge gaps and research opportunities

Author:

Wu Jia-Hui,McGenity Terry J.,Rettberg Petra,Simões Marta F.,Li Wen-Jun,Antunes André

Abstract

Water bodies on Mars and the icy moons of the outer solar system are now recognized as likely being associated with high levels of salt. Therefore, the study of high salinity environments and their inhabitants has become increasingly relevant for Astrobiology. Members of the archaeal class Halobacteria are the most successful microbial group living in hypersaline conditions and are recognized as key model organisms for exposure experiments. Despite this, data for the class is uneven across taxa and widely dispersed across the literature, which has made it difficult to properly assess the potential for species of Halobacteria to survive under the polyextreme conditions found beyond Earth. Here we provide an overview of published data on astrobiology-linked exposure experiments performed with members of the Halobacteria, identifying clear knowledge gaps and research opportunities.

Funder

Macau University of Science and Technology

Fundo para o Desenvolvimento das Ciências e da Tecnologia

Publisher

Frontiers Media SA

Subject

Microbiology (medical),Microbiology

Reference207 articles.

1. Abundance and diversity of aerobic heterotrophic microorganisms and their interaction with cyanobacteria in the oxic layer of an intertidal hypersaline cyanobacterial mat.;Abed;FEMS Microbiol. Ecol.,2018

2. The UV limits of life on extrasolar planets: An experiment with halophile Archaea bacteria at different UV doses.;Abrevaya;Bol. de la Asociacion Argent. de Astronomia La Plata Argent.,2008

3. UV habitability and dM stars: An approach for evaluation of biological survival.;Abrevaya;Proc. Int. Astron. Union,2010

4. Flares and habitability.;Abrevaya;Proc. Int. Astron. Union

5. Comparative survival analysis of Deinococcus radiodurans and the Haloarchaea Natrialba magadii and Haloferax volcanii exposed to vacuum ultraviolet irradiation.;Abrevaya;Astrobiology

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