3.8 Article

Planetary interchange of bioactive material: Probability factors and implications

Journal

ORIGINS OF LIFE AND EVOLUTION OF THE BIOSPHERE
Volume 31, Issue 1-2, Pages 185-197

Publisher

KLUWER ACADEMIC PUBL
DOI: 10.1023/A:1006757011007

Keywords

astrobiology; impacts; interplanetary; Mars; martian meteorites; panspermia; radiation; survival; transport

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It is now well-accepted that both lunar and martian materials are represented in the meteorite collections. Early suggestions that viable organisms might survive natural transport between planets have not yet been thoroughly examined. The concept of Planetary Interchange of Bioactive Material (PIBM) is potentially relevant to the conditions under which life originated. PIBM has been also invoked to infer that the potential danger to Earth from martian materials is non-existent, an inference with, however, many pitfalls. Numerous impediments to efficient transfer of viable organisms exist. In this work, the lethality of space radiation during long transients and the biasing of launched objects toward materials unlikely to host abundant organisms are examined and shown to reduce the likelihood of successful transfer by orders of magnitude. It is also shown that martian meteorites studied to date assuredly have been subjected to sterilizing levels of ionizing radiation in space. PIBM considerations apply to both the solar system locale(s) of the origin of life and to the applicability of planetary protection protocols to preserve the biospheres of planetary bodies, including our own.

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