<div><p>We have detected a concentration of boron in martian clay far in excess of that in any previously reported extra-terrestrial object. This enrichment indicates that the chemistry necessary for the formation of ribose, a key component of RNA, could have existed on Mars since the formation of early clay deposits, contemporary to the emergence of life on Earth. Given the greater similarity of Earth and Mars early in their geological history, and the extensive disruption of Earth's earliest mineralogy by plate tectonics, we suggest that the conditions for prebiotic ribose synthesis may be better understood by further Mars exploration.</p></div
International audienceAbstract: We focus on processes possibly occurring on Mars that could affect s...
Fresh fracture surfaces of the martian meteorite ALH84001 contain abundant polycyclic aromatic hydro...
Certain chemical and mineral features of the Martian meteorite ALH84001 were reported in 1996 to be ...
We have detected a concentration of boron in martian clay far in excess of that in any previously re...
We have detected a concentration of boron in martian clay far in excess of that in any previously re...
International audienceWe report the first in situ detection of boron on Mars. Boron has been detecte...
Evidence for an “RNA world, ” an episode of life on Earth during which RNA was the only genet-ically...
© 2021 The Authors. Geobiology published by John Wiley & Sons Ltd. Advances in origins of life res...
There are three groups of scientists dominating the search for the origin of life: the organic chemi...
Forthcoming exploration of Mars aims at identifying fossil biosignatures within ancient clay-rich fo...
The recognition of past habitable environments on Mars has increased the urgency to understand biosi...
To detect life in the Martian soil, tests were designed to look for respiration and photosynthesis. ...
Although the habitability of early Mars is now well established, its suitability for conditions favo...
In 1996, David McKay and coworkers reported evidence suggesting the possibility of fossils in the ma...
Ancient biosignatures are key to understanding the emergence and evolution of life in its planetary ...
International audienceAbstract: We focus on processes possibly occurring on Mars that could affect s...
Fresh fracture surfaces of the martian meteorite ALH84001 contain abundant polycyclic aromatic hydro...
Certain chemical and mineral features of the Martian meteorite ALH84001 were reported in 1996 to be ...
We have detected a concentration of boron in martian clay far in excess of that in any previously re...
We have detected a concentration of boron in martian clay far in excess of that in any previously re...
International audienceWe report the first in situ detection of boron on Mars. Boron has been detecte...
Evidence for an “RNA world, ” an episode of life on Earth during which RNA was the only genet-ically...
© 2021 The Authors. Geobiology published by John Wiley & Sons Ltd. Advances in origins of life res...
There are three groups of scientists dominating the search for the origin of life: the organic chemi...
Forthcoming exploration of Mars aims at identifying fossil biosignatures within ancient clay-rich fo...
The recognition of past habitable environments on Mars has increased the urgency to understand biosi...
To detect life in the Martian soil, tests were designed to look for respiration and photosynthesis. ...
Although the habitability of early Mars is now well established, its suitability for conditions favo...
In 1996, David McKay and coworkers reported evidence suggesting the possibility of fossils in the ma...
Ancient biosignatures are key to understanding the emergence and evolution of life in its planetary ...
International audienceAbstract: We focus on processes possibly occurring on Mars that could affect s...
Fresh fracture surfaces of the martian meteorite ALH84001 contain abundant polycyclic aromatic hydro...
Certain chemical and mineral features of the Martian meteorite ALH84001 were reported in 1996 to be ...