Literature DB >> 19778274

Cryptic photosynthesis--extrasolar planetary oxygen without a surface biological signature.

Charles S Cockell1, Lisa Kaltenegger, John A Raven.   

Abstract

On Earth, photosynthetic organisms are responsible for the production of virtually all the oxygen in the atmosphere. On land, vegetation reflects in the visible and leads to a "red edge," which developed about 450 million years ago on Earth and has been proposed as a biosignature for life on extrasolar planets. However, in many regions on Earth, particularly where surface conditions are extreme--in hot and cold deserts, for example--photosynthetic organisms can be driven into and under substrates where light is still sufficient for photosynthesis. These communities exhibit no detectable surface spectral signature to indicate life. The same is true of the assemblages of photosynthetic organisms at more than a few meters' depth in water bodies. These communities are widespread and dominate local photosynthetic productivity. We review known cryptic photosynthetic communities and their productivity. We have linked geomicrobiology with observational astronomy by calculating the disk-averaged spectra of cryptic habitats and identifying detectable features on an exoplanet dominated by such a biota. The hypothetical cryptic photosynthesis worlds discussed here are Earth analogues that show detectable atmospheric biosignatures like our own planet but do not exhibit a discernable biological surface feature in the disc-averaged spectrum.

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Year:  2009        PMID: 19778274     DOI: 10.1089/ast.2008.0273

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


  5 in total

1.  Habitable worlds with no signs of life.

Authors:  Charles S Cockell
Journal:  Philos Trans A Math Phys Eng Sci       Date:  2014-03-24       Impact factor: 4.226

Review 2.  Exoplanet Biosignatures: A Review of Remotely Detectable Signs of Life.

Authors:  Edward W Schwieterman; Nancy Y Kiang; Mary N Parenteau; Chester E Harman; Shiladitya DasSarma; Theresa M Fisher; Giada N Arney; Hilairy E Hartnett; Christopher T Reinhard; Stephanie L Olson; Victoria S Meadows; Charles S Cockell; Sara I Walker; John Lee Grenfell; Siddharth Hegde; Sarah Rugheimer; Renyu Hu; Timothy W Lyons
Journal:  Astrobiology       Date:  2018-05-04       Impact factor: 4.335

3.  Photosynthesis in hydrogen-dominated atmospheres.

Authors:  William Bains; Sara Seager; Andras Zsom
Journal:  Life (Basel)       Date:  2014-11-18

4.  Identification of far-red light acclimation in an endolithic Chroococcidiopsis strain and associated genomic features: Implications for oxygenic photosynthesis on exoplanets.

Authors:  Daniela Billi; Alessandro Napoli; Claudia Mosca; Claudia Fagliarone; Roberto de Carolis; Amedeo Balbi; Matteo Scanu; Vera M Selinger; Laura A Antonaru; Dennis J Nürnberg
Journal:  Front Microbiol       Date:  2022-08-04       Impact factor: 6.064

5.  Namib Desert primary productivity is driven by cryptic microbial community N-fixation.

Authors:  Jean-Baptiste Ramond; Stephan Woodborne; Grant Hall; Mary Seely; Don A Cowan
Journal:  Sci Rep       Date:  2018-05-02       Impact factor: 4.379

  5 in total

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