The effects of parent-body hydrothermal heating on amino acid abundances in CI-like chondrites
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概要
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We determined the amino acid abundances and enantiomeric compositions of the Antarctic CI1 carbonaceous chondrites Yamato (Y)-86029 and Y-980115, as well as the Ivuna and Orgueil CI1 carbonaceous chondrites by liquid chromatography with fluorescence detection and time-of-flight mass spectrometry. Y-86029 and Y-980115 both show evidence of parent-body heating (500-600 °C) in addition to aqueous alteration, while Ivuna and Orgueil only show evidence for aqueous alteration. In contrast to Ivuna and Orgueil, which each contain 〜70 nmol/g of amino acids in acid-hydrolyzed, water extracts, both heated Yamato CI meteorites contain only low levels of amino acids that were primarily l-enantiomers of proteinogenic amino acids, indicating that they are likely to be terrestrial in origin. Because indigenous amino acids have been found in meteorites that have experienced metamorphic temperatures of >1000 °C with only minimal aqueous alteration, heating alone is not sufficient to explain the lack of amino acids in Y-86029 and Y-980115. Rather, our data suggest that the combination of heating and aqueous alteration has a profound destructive effect on amino acids in meteorites. This finding has implications for the origins of amino acids and other molecules in the early evolution of our solar system.
著者
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Burton Aaron
NASA Johnson Space Center, KR, 2101 NASA Parkway, Houston, TX 77058, USA
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Glavin Daniel
NASA Goddard Space Flight Center, Solar System Exploration Division, 8800 Greenbelt Road, Maryland 20771, USA
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Grunsfeld Sarah
NASA Goddard Space Flight Center, Solar System Exploration Division, 8800 Greenbelt Road, Maryland 20771, USA
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Elsila Jamie
NASA Goddard Space Flight Center, Solar System Exploration Division, 8800 Greenbelt Road, Maryland 20771, USA
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Dworkin Jason
NASA Goddard Space Flight Center, Solar System Exploration Division, 8800 Greenbelt Road, Maryland 20771, USA