hdl:10101/npre.2009.3333.2
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Animal emergence during Snowball Earths by thermosynthesis in submarine hydrothermal vents

Anthonie W. J. Muller1

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  1. Swammerdam Institute for Life Sciences, University of Amsterdam, The Netherlands
Document Type:
Manuscript
Date:
Received 18 June 2009 13:05 UTC; Posted 19 June 2009
Subjects:
Developmental Biology, Evolutionary Biology
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Abstract:

Darwin already commented on the lateness in the fossil record of the emergence of the animals, calling it a valid argument against his theory of evolution1. This emergence of the animals (metazoans: multicellular animals) has therefore attracted much attention2-5. Two decades ago it was reported that extensive global glaciations (Snowball Earths) preceded the emergence6-7. Here we causally relate the emergence and the glaciations by invoking benthic sessile8-11 thermosynthesizing12-13 protists that gained free energy as ATP while oscillating in the thermal gradient between a submarine hydrothermal vent14 and the ice-covered ocean. During a global glaciation their size increased from microscopic to macroscopic due to the selective advantage of a larger span of the thermal gradient. At the glaciation’s end the ATP-generating mechanisms reversed and used ATP to sustain movement. Lastly, by functioning as animal organs, these protists then through symbiogenesis15-17 brought forth the first animals. This simple and straightforward scenario for the emergence of animals accounts for their large organ and organism size and their use of ATP, embryo and epigenetic control of development. The presented hypothesis is testable by collecting organisms near today’s submarine hydrothermal vents and studying their behaviour in thermal gradients easily constructed in the laboratory. The scenario is extended to a general model for the emergence of biological movement18.

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This document is licensed to the public under the Creative Commons Attribution 3.0 License
How to cite this document:

Muller, Anthonie. Animal emergence during Snowball Earths by thermosynthesis in submarine hydrothermal vents. Available from Nature Precedings <http://hdl.handle.net/10101/npre.2009.3333.2> (2009)

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v1 Posted 17 June 2009

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