Comparing Amino Acid Abundances and Distributions Across Carbonaceous Chondrite Groups
Aaron S. Burton, Michael P. Callahan, D. P. Glavin, Jamie E. Elsila, Jason P. Dworkin
Abstract
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Aaron S. Burton, Michael P. Callahan, D. P. Glavin, Jamie E. Elsila, Jason P. Dworkin
Abstract
Open-access reader
Meteorites are grouped according to bulk properties such as chemical composition and mineralogy. These parameters can vary significantly among the different carbonaceous chondrite groups (CI, CM, CO, CR, CH, CB, CV and CK). We have determined the amino acid abundances of more than 30 primary amino acids in meteorites from each of the eight groups, revealing several interesting trends. There are noticeable differences in the structural diversity and overall abundances of amino acids between meteorites from the different chondrite groups. Because meteorites may have been an important source of amino acids to the prebiotic Earth and these organic compounds are essential for life as we know it, the observed variations of these molecules may have been important for the origins of life.
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Meteorites are grouped according to bulk properties such as chemical composition and mineralogy. These parameters can vary significantly among the different carbonaceous chondrite groups (CI, CM, CO, CR, CH, CB, CV and CK). We have determined the amino acid abundances of more than 30 primary amino acids in meteorites from each of the eight groups, revealing several interesting trends. There are noticeable differences in the structural diversity and overall abundances of amino acids between meteorites from the different chondrite groups. Because meteorites may have been an important source of amino acids to the prebiotic Earth and these organic compounds are essential for life as we know it, the observed variations of these molecules may have been important for the origins of life.
Key concepts: Meteorite, Carbonaceous chondrite, Chondrite, Astrobiology, Chemistry, Amino acid, Abundance (ecology), Environmental chemistry