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Sökning: onr:"swepub:oai:DiVA.org:nrm-4514" > Dubiofossils from a...

Dubiofossils from a Mars‐analogue subsurface palaeoenvironment: The limits of biogenicity criteria

McMahon, Sean (författare)
UK Centre for Astrobiology School of Physics and Astronomy University of Edinburgh Edinburgh UK;School of Geosciences Grant Institute University of Edinburgh Edinburgh UK
Ivarsson, Magnus (författare)
Naturhistoriska riksmuseet,Enheten för paleobiologi,Department of Paleobiology Swedish Museum of Natural History Stockholm Sweden
Wacey, David (författare)
Centre for Microscopy Characterisation and Analysis The University of Western Australia Perth WA Australia
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Saunders, Martin (författare)
Centre for Microscopy Characterisation and Analysis The University of Western Australia Perth WA Australia
Belivanova, Veneta (författare)
Naturhistoriska riksmuseet,Enheten för paleobiologi,Department of Paleobiology Swedish Museum of Natural History Stockholm Sweden
Muirhead, David (författare)
School of Geosciences King's College University of Aberdeen Aberdeen UK
Knoll, Pamela (författare)
Department of Chemistry and Biochemistry Florida State University Tallahassee FL USA
Steinbock, Oliver (författare)
Department of Chemistry and Biochemistry Florida State University Tallahassee FL USA
Frost, Daniel A. (författare)
Department of Earth & Planetary Science University of California Berkeley CA USA
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 (creator_code:org_t)
2021-05-05
2021
Engelska.
Ingår i: Geobiology. - : Wiley-Blackwell. - 1472-4677 .- 1472-4669. ; 19:5, s. 473-488
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • The search for a fossil record of Earth's deep biosphere, partly motivated by potential analogies with subsurface habitats on Mars, has uncovered numerous assemblages of inorganic microfilaments and tubules inside ancient pores and fractures. Although these enigmatic objects are morphologically similar to mineralized microorganisms (and some contain organic carbon), they also resemble some abiotic structures. Palaeobiologists have responded to this ambiguity by evaluating problematic filaments against checklists of “biogenicity criteria”. Here, we describe material that tests the limits of this approach. We sampled Jurassic calcite veins formed through subseafloor serpentinization, a water–rock reaction that can fuel the deep biosphere and is known to have occurred widely on Mars. At two localities ~4 km apart, veins contained curving, branched microfilaments composed of Mg-silicate and Fe-oxide minerals. Using a wide range of analytical techniques including synchrotron X-ray microtomography and scanning transmission electron microscopy, we show that these features meet many published criteria for biogenicity and are comparable to fossilized cryptoendolithic fungi or bacteria. However, we argue that abiotic processes driven by serpentinization could account for the same set of lifelike features, and report a chemical garden experiment that supports this view. These filaments are, therefore, most objectively described as dubiofossils, a designation we here defend from criticism and recommend over alternative approaches, but which nevertheless signifies an impasse. Similar impasses can be anticipated in the future exploration of subsurface palaeo-habitats on Earth and Mars. To avoid them, further studies are required in biomimetic geochemical self-organization, microbial taphonomy and micro-analytical techniques, with a focus on subsurface habitats.

Ämnesord

NATURVETENSKAP  -- Geovetenskap och miljövetenskap -- Annan geovetenskap och miljövetenskap (hsv//swe)
NATURAL SCIENCES  -- Earth and Related Environmental Sciences -- Other Earth and Related Environmental Sciences (hsv//eng)

Nyckelord

General Earth and Planetary Sciences
General Environmental Science
Ecology
Evolution
Behavior and Systematics
Diversity of life
Livets mångfald
The changing Earth
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