Carbon-rich meteorites, carbonaceous chondrites, contain many biologically relevant organic molecules and delivered prebiotic material to the young Earth. We present compound-specific carbon isotope data indicating that measured purine and pyrimidine compounds are indigenous components of the Murchison meteorite. Carbon isotope ratios for uracil and xanthine of δ13C=+44.5‰ and +37.7‰, respectively, indicate a non-terrestrial origin for these compounds. These new results demonstrate that organic compounds, which are components of the genetic code in modern biochemistry, were already present in the early solar system and may have played a key role in life's origin
Nucleic acids likely played a foundational role in the origin of life. However, the prebiotic chemis...
Compound-specific carbon isotope analysis (delta(exp 13)C) of meteoritic organic compounds can be us...
International audienceDust grains of organic matter were the main reservoir of C and N in the formin...
Carbonaceous meteorites contain a diverse suite of organic molecules and delivered pre biotic organi...
Much effort has been directed to analyses of organic compounds in carbonaceous chondrites because of...
Life requires specific conditions that have been, so far, only proven to meet on Earth. Though the c...
Prebiotic molecules, fundamental building blocks for the origin of life, have been found in carbonac...
Solvent extractions were done on the carbonaceous chondrites Murray, Murchison, Orgueil and Renazzo,...
Carbon-containing meteorites provide a natural sample of the extraterrestrial organic chemistry that...
Substantial isotopic enrichments in D, ^(13)C, and ^(15)N in the organic compounds of the Murchison ...
Substantial isotopic enrichments in D, ^(13)C, and ^(15)N in the organic compounds of the Murchison ...
Meteorites are extraterrestrial objects that survive the passage through the Earth's atmosphere and ...
Meteorites are extraterrestrial objects that survive the passage through the Earth's atmosphere and ...
Nucleic acids likely played a foundational role in the origin of life. However, the prebiotic chemis...
Substantial isotopic enrichments in D, ^(13)C, and ^(15)N in the organic compounds of the Murchison ...
Nucleic acids likely played a foundational role in the origin of life. However, the prebiotic chemis...
Compound-specific carbon isotope analysis (delta(exp 13)C) of meteoritic organic compounds can be us...
International audienceDust grains of organic matter were the main reservoir of C and N in the formin...
Carbonaceous meteorites contain a diverse suite of organic molecules and delivered pre biotic organi...
Much effort has been directed to analyses of organic compounds in carbonaceous chondrites because of...
Life requires specific conditions that have been, so far, only proven to meet on Earth. Though the c...
Prebiotic molecules, fundamental building blocks for the origin of life, have been found in carbonac...
Solvent extractions were done on the carbonaceous chondrites Murray, Murchison, Orgueil and Renazzo,...
Carbon-containing meteorites provide a natural sample of the extraterrestrial organic chemistry that...
Substantial isotopic enrichments in D, ^(13)C, and ^(15)N in the organic compounds of the Murchison ...
Substantial isotopic enrichments in D, ^(13)C, and ^(15)N in the organic compounds of the Murchison ...
Meteorites are extraterrestrial objects that survive the passage through the Earth's atmosphere and ...
Meteorites are extraterrestrial objects that survive the passage through the Earth's atmosphere and ...
Nucleic acids likely played a foundational role in the origin of life. However, the prebiotic chemis...
Substantial isotopic enrichments in D, ^(13)C, and ^(15)N in the organic compounds of the Murchison ...
Nucleic acids likely played a foundational role in the origin of life. However, the prebiotic chemis...
Compound-specific carbon isotope analysis (delta(exp 13)C) of meteoritic organic compounds can be us...
International audienceDust grains of organic matter were the main reservoir of C and N in the formin...