Literature DB >> 20402583

Survival potential and photosynthetic activity of lichens under Mars-like conditions: a laboratory study.

Jean-Pierre de Vera1, Diedrich Möhlmann, Frederike Butina, Andreas Lorek, Roland Wernecke, Sieglinde Ott.   

Abstract

Lichens were repetitively exposed over 22 days to thermophysical Mars-like conditions at low-and mid-latitudes. The simulated parameters and the experimental setup are described. Natural samples of the lichen Xanthoria elegans were used to investigate their ability to survive the applied Mars-like conditions. The effects of atmospheric pressure, CO(2) concentration, low temperature, water availability, and light on Mars were also studied. The results of these experiments indicate that no significant decrease in the vitality of the lichen occurred after exposure to simulated martian conditions, which was demonstrated by confocal laser scanning microscopy analysis, and a 95% CO(2) atmosphere with 100% humidity, low pressure (partial pressure of CO(2) was 600 Pa), and low temperature has a balancing effect on photosynthetic activity as a function of temperature. This means a starting low photosynthetic activity at high CO(2) concentrations with Earth-like pressure has a reduction of 60%. But, if the simulated atmospheric pressure is reduced to Mars-like conditions with the maintenance of the same Mars-like 95% CO(2) concentration, the photosynthetic activity increases and again reaches similar values as those exhibited under terrestrial atmospheric pressure and concentration. Based on these results, we presume that, in any region on Mars where liquid water might be available, even for short periods of time, a eukaryotic symbiotic organism would have the ability to survive, at least over weeks, and to temporarily photosynthesize.

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Year:  2010        PMID: 20402583     DOI: 10.1089/ast.2009.0362

Source DB:  PubMed          Journal:  Astrobiology        ISSN: 1557-8070            Impact factor:   4.335


  18 in total

1.  Extremotolerance and resistance of lichens: comparative studies on five species used in astrobiological research II. Secondary lichen compounds.

Authors:  J Meessen; F J Sánchez; A Sadowsky; R de la Torre; S Ott; J-P de Vera
Journal:  Orig Life Evol Biosph       Date:  2013-12-22       Impact factor: 1.950

Review 2.  AstRoMap European Astrobiology Roadmap.

Authors:  Gerda Horneck; Nicolas Walter; Frances Westall; John Lee Grenfell; William F Martin; Felipe Gomez; Stefan Leuko; Natuschka Lee; Silvano Onofri; Kleomenis Tsiganis; Raffaele Saladino; Elke Pilat-Lohinger; Ernesto Palomba; Jesse Harrison; Fernando Rull; Christian Muller; Giovanni Strazzulla; John R Brucato; Petra Rettberg; Maria Teresa Capria
Journal:  Astrobiology       Date:  2016-03       Impact factor: 4.335

Review 3.  The Astrobiology Primer v2.0.

Authors:  Shawn D Domagal-Goldman; Katherine E Wright; Katarzyna Adamala; Leigh Arina de la Rubia; Jade Bond; Lewis R Dartnell; Aaron D Goldman; Kennda Lynch; Marie-Eve Naud; Ivan G Paulino-Lima; Kelsi Singer; Marina Walther-Antonio; Ximena C Abrevaya; Rika Anderson; Giada Arney; Dimitra Atri; Armando Azúa-Bustos; Jeff S Bowman; William J Brazelton; Gregory A Brennecka; Regina Carns; Aditya Chopra; Jesse Colangelo-Lillis; Christopher J Crockett; Julia DeMarines; Elizabeth A Frank; Carie Frantz; Eduardo de la Fuente; Douglas Galante; Jennifer Glass; Damhnait Gleeson; Christopher R Glein; Colin Goldblatt; Rachel Horak; Lev Horodyskyj; Betül Kaçar; Akos Kereszturi; Emily Knowles; Paul Mayeur; Shawn McGlynn; Yamila Miguel; Michelle Montgomery; Catherine Neish; Lena Noack; Sarah Rugheimer; Eva E Stüeken; Paulina Tamez-Hidalgo; Sara Imari Walker; Teresa Wong
Journal:  Astrobiology       Date:  2016-08       Impact factor: 4.335

4.  Resistance of the Lichen Buellia frigida to Simulated Space Conditions during the Preflight Tests for BIOMEX--Viability Assay and Morphological Stability.

Authors:  J Meeßen; P Wuthenow; P Schille; E Rabbow; J-P P de Vera; S Ott
Journal:  Astrobiology       Date:  2015-07-28       Impact factor: 4.335

5.  Extremotolerance and resistance of lichens: comparative studies on five species used in astrobiological research I. Morphological and anatomical characteristics.

Authors:  J Meeßen; F J Sánchez; A Brandt; E-M Balzer; R de la Torre; L G Sancho; J-P de Vera; S Ott
Journal:  Orig Life Evol Biosph       Date:  2013-07-20       Impact factor: 1.950

6.  Characterisation of Growth and Ultrastructural Effects of the Xanthoria elegans Photobiont After 1.5 Years of Space Exposure on the International Space Station.

Authors:  Annette Brandt; Eva Posthoff; Jean-Pierre de Vera; Silvano Onofri; Sieglinde Ott
Journal:  Orig Life Evol Biosph       Date:  2015-11-02       Impact factor: 1.950

7.  Environmental stimuli drive a transition from cooperation to competition in synthetic phototrophic communities.

Authors:  Cristal Zuñiga; Chien-Ting Li; Geng Yu; Mahmoud M Al-Bassam; Tingting Li; Liqun Jiang; Livia S Zaramela; Michael Guarnieri; Michael J Betenbaugh; Karsten Zengler
Journal:  Nat Microbiol       Date:  2019-10-07       Impact factor: 17.745

8.  Pressurized Martian-Like Pure CO2 Atmosphere Supports Strong Growth of Cyanobacteria, and Causes Significant Changes in their Metabolism.

Authors:  Gayathri Murukesan; Hannu Leino; Pirkko Mäenpää; Kurt Ståhle; Wuttinun Raksajit; Harry J Lehto; Yagut Allahverdiyeva-Rinne; Kirsi Lehto
Journal:  Orig Life Evol Biosph       Date:  2015-08-21       Impact factor: 1.950

9.  Protein patterns of black fungi under simulated Mars-like conditions.

Authors:  Kristina Zakharova; Gorji Marzban; Jean-Pierre de Vera; Andreas Lorek; Katja Sterflinger
Journal:  Sci Rep       Date:  2014-05-29       Impact factor: 4.379

10.  Antioxidant capacities, phenolic profile and cytotoxic effects of saxicolous lichens from trans-Himalayan cold desert of Ladakh.

Authors:  Jatinder Kumar; Priyanka Dhar; Amol B Tayade; Damodar Gupta; Om P Chaurasia; Dalip K Upreti; Rajesh Arora; Ravi B Srivastava
Journal:  PLoS One       Date:  2014-06-17       Impact factor: 3.240

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