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A building block of proteins found in samples from an icy comet’s halo suggests that the ingredients of life could have hitched a ride to early Earth, researchers reported August 16 at a meeting of the American Chemical Society.
“The early Earth was bombarded with comets and meteorites,” says Jamie Elsila of NASA’s Goddard Space Flight Center in Greenbelt, Md., who led the new analysis. “This is one more clue to what ingredients could have been present on the early Earth and how they could have gotten there.”
NASA’s Stardust spacecraft collected the study samples when it flew through the gassy halo, or coma, of the comet Wild 2 (pronounced “Vilt-2”) in 2004. Two years later the collecting device parachuted to Earth, landing in the dark of night in Utah. Previous analyses by Elsila’s NASA colleagues Daniel Glavin and Jason Dworkin revealed that the samples contained amino acids, the building blocks of proteins. Proteins are the major construction material of living things and many are tasked with making fundamental biochemical reactions happen. But the analyses couldn’t rule out contamination by earthly proteins.
Now finer instruments reveal that samples of glycine, the smallest amino acid, are indeed extraterrestrial. Glycine molecules in the comet samples contain more of the heavy version, or isotope, of carbon than earthly glycine has, Elsila reported. A paper describing the discovery has been accepted for publication in the journal Meteoritics and Planetary Science.
“This is a really nice confirmation,” says Ralf I. Kaiser, a physical chemist at the University of Hawaii at Manoa and NASA's Astrobiology Institute. Lab studies by Kaiser and others have shown how energy from UV light or solar winds could spur the formation of amino acids in space. Galactic cosmic rays can penetrate meters deep into ice, says Kaiser, suggesting that other amino acids could form inside a comet's icy body.
The find is “very pleasing and satisfying, but not a shock,” says Elsila. While previous reported detections of glycine in interstellar space have been disputed, plenty of amino acids have been detected in meteorites and amino acid precursors have been found in comets. Wild 2 is thought to be a very old comet and it could provide a snapshot of what was around when the solar system formed, Elsila says.
Glycine is small and volatilizes easily, facilitating its detection in the comet’s gassy halo. Probing the innards of a comet may reveal even more of life’s molecules. The European Space Agency’s Rosetta spacecraft is scheduled to release a small lander on the icy nucleus of comet 67P/Churyumov-Gerasimenko in 2014.
“I’d be very interested in a comet nucleus,” says Elsila.
Dust to dust from Science News on Vimeo.
A molecule associated with life on Earth originated in space, perhaps in the halo of comet Wild 2 (above) where it was collected.
This animation depicts Stardust's turbulent ride through three of more than two dozen jets that blast outward from comet Wild 2. The jets pummeled the spacecraft with about a million particles per second. Twelve particles, some larger than a bullet, penetrated the top layer of the spacecraft's protective shield.
Animation Credit: JPL/NASA
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Earliest and present Earth life are, obviously and commonsensibly, genes. All other organisms are take-offs of genes. Early life was formed and maintained by DIRECT sunlight. Biometabolism, dependence on INDIRECT sunlight energy, is a very late phase of Earth's life evolution:
Updated Life's Manifest May 2009
http://www.the-scientist.com/community/posts/list/140/122.page#2321
Recapitulation of some earlier notes on the
Scientific Comprehension Of The Origin, Drive, Nature And Purpose Of Life
A. Uniqueness Of science among human artifacts
ALL aspects of our culture are, of course, anthropoartifacts, including science. Yet among those artifacts science has a distinct uniqueness for us.
During the recent several centuries in the course of human history humans have been developing science at an accelerating rate as a provider of convincing, ever closer approaching, approximate models of the real world.
B. Origin and nature of life
Astronomically there are two "physics", a "classical physics" system of and between galactic clusters, and a "quantum physics" system WITHIN the galactic clusters.
The onset of big-bang's inflation started gravity, followed by formation of galactic clusters that behave as Newtonian bodies while continuously reconverting their shares of pre-inflation masses back to energy, that continuously fuels their ongoing expansion, and of endless intertwined evolutions WITHIN the clusters in attempts to resist this reconversion.
As mass is just another face of energy it is commonsensible to regard not only life, but mass in general, as a format of temporarily constrained energy.
It therefore ensues that whereas the in-space expanding cosmic constructs, the galaxies clusters, are - overall - continuously converting their original pre-inflation mass back to energy, the overall evolution WITHIN them, within the clusters, is in the opposite direction, temporarily constrained energy packages such as black holes and biospheres and other energy-storing mass-formats are precariuosly forming and "doing best" to survive as long as "possible"...
C. The drive and nature of Earth life
Earth life Genesis, formation of the first genes, was a phenomenon of serendipitous occurrence, in a supportive environment, of 'favourably-coursed' energy potential between in-coming sun's radiation and polymerizing-precipitating RNA-related oligomeric configuration.
The drive of Earth life and of its evolution is to enhance the functionality and survivability of Earth's genes, in order to maintain and enhance Earth-biosphere's temporary constrained energy storage and to maintain the biosphere BIO as long as possible.
It is the genes, life's prime strata organisms, that evolve, and the evolution of genomes, the 2nd stratum of life, and of the 3rd life stratum cellular organisms, is an interenhancing consequence of their genes' evolution.
D. The formation of Earth life
Earth Life: 1. a format of temporarily constrained energy, retained in temporary constrained genetic energy packages in forms of genes, genomes and organisms 2. a real virtual affair that pops in and out of existence in its matrix, which is the energy constrained in Earth's biosphere.
Earth organism: a temporary self-replicable constrained-energy genetic system that supports and maintains Earth's biosphere by proliferating and maintenance of genes.
Gene: the primal Earth's organism. (1st stratum organism)
Genome: a multigenes organism consisting of a cooperative commune of its member genes. (2nd stratum organism)
Cellular organisms: mono- or multi-celled Earth organisms. (3rd stratum organism)
E. Update of underlying life sciences conception is thus feasible
- First were independent individual genes, Earth's primal organisms.
- Genes aggregated cooperatively into genomes, multigenes organisms, with genomes' organs.
- Simultaneously or consequently genomes evolved protective-functional membranes, organs.
- Then followed cellular organisms, with a variety of outer-cell membrane shapes and
functionalities.
This conception is a scientific, NOT TECHNICAL, life-science innovation.
It is tomorrow's comprehension of life and of its evolution.
IT IS FRAUGHT WITH INTRIGUING DARWINIAN EVOLUTION IMPLICATIONS.
IT IS FRAUGHT WITH INTRIGUING TECHNOLOGICAL DEVELOPMENTS POTENTIALS.
F. The purpose of OUR, human, life
The purpose of OUR life and of its promotion is ours to formulate and set. It derives solely from our cognition.
Suggesting,
Dov Henis
(Comments from 22nd century)
http://blog.360.yahoo.com/blog-P81pQcU1dLBbHgtjQjxG_Q--?cq=1
On Energy, Mass, Gravity, Galaxies Clusters, AND Life
A Commonsensible Recapitulation
http://www.the-scientist.com/community/posts/list/184.page#2125
EVOLUTION Beyond Darwin 200
http://www.physforum.com/index.php?showtopic=14988&st=405entry396201
http://www.the-scientist.com/community/posts/list/100/122.page#1407
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