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Review
. 2017 Dec;47(4):545-553.
doi: 10.1007/s11084-016-9522-1. Epub 2016 Oct 20.

Tardigrades in Space Research - Past and Future

Affiliations
Review

Tardigrades in Space Research - Past and Future

Erdmann Weronika et al. Orig Life Evol Biosph. 2017 Dec.

Abstract

To survive exposure to space conditions, organisms should have certain characteristics including a high tolerance for freezing, radiation and desiccation. The organisms with the best chance for survival under such conditions are extremophiles, like some species of Bacteria and Archea, Rotifera, several species of Nematoda, some of the arthropods and Tardigrada (water bears). There is no denying that tardigrades are one of the toughest animals on our planet and are the most unique in the extremophiles group. Tardigrada are very small animals (50 to 2,100 μm in length), and they inhabit great number of Earth environments. Ever since it was proven that tardigrades have high resistance to the different kinds of stress factors associated with cosmic journeys, combined with their relatively complex structure and their relative ease of observation, they have become a perfect model organism for space research. This taxon is now the focus of astrobiologists from around the world. Therefore, this paper presents a short review of the space research performed on tardigrades as well as some considerations for further studies.

Keywords: Extreme conditions; Extremophiles; Space biology; Space research; Tardigrada; Water bears.

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References

    1. Altiero T, Guidetti R, Caselli V, Cesari M, Rebecchi L. Ultraviolet-B radiation tolerance in hydrated and desiccated eutardigrades. J Zool Syst Evol Res. 2011;49:104–110. doi: 10.1111/j.1439-0469.2010.00607.x. - DOI
    1. Baumann H. Die Anabiose der Tardigraden. Zool Jahrb. 1922;45:501–556.
    1. Becquerel P. La suspension de la vie au desessous de 1/20 K absolu par demagnetisation adiabatique de l’alun de fer dans le vide les plus elève. C R Acad Séan Paris. 1950;231:261–263.
    1. Bertolani R, Rebecchi L, Jönsson KI, Borsari S, Guidetti R, Altiero T. Tardigrades as a model for experiences of animal survival in the space. In: Monti, R., Bonifazi, C. (Eds.), La Scienza e la Tecnologia Spaziale sulla Stazione Internazionale (ISS). Spec. Issue ASI Natl. Workshop, Turin, 2001. MSSU—Micro Space Station Util. 2001;2:211–212.
    1. Cockell CS, Schuerger AC, Billi D, Friedmann EI, Panitz C. Effects of a simulated Martian UV flux on the cyanobacterium, Chroococcidiopsis sp. 029. Astrobiol. 2005;5:127–140. doi: 10.1089/ast.2005.5.127. - DOI - PubMed

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