BIBLI OGRAPHIE
[1] Gilbert, W. (1986), The RNA world, Nature 319, 618.
[2]* Rothschild, L. J. & Mancinelli, R. L. (2001), Life in extreme environments, Nature 409, 1092-1101
[3] Miller, S. L. (1953), Production of amino acids under possible primitive Earth conditions, Science 117, 528-529.
[4]* Szostak, J. W., Bartel, D. P. & Luisi, P. L. (2001), Synthesizing life, Nature 409, 387-390
[5] Forterre, P. (1996), A la recherche de LUCA, Compte rendu de la fondation des treilles, http://www-archbac.u-psud.fr/Meeting/LesTreilles/Treilles_frm.html
[6] Hazen, R. M. (2005a), Genesis, Washington D. C., Joseph Henry Press.
[7] Pace, N. R. (2001), The universal nature of biochemistry, Proc. Natl. Acad. Sci. USA 98, 805-808.
[8]* Sacerdote, M. G. & Szostak, J. W. (2004), Semipermeable lipid bilayers exhibit diastereoselectivity favoring ribose, Proc. Natl. Acad. Sci. USA 102, 6004-6008
[9] Yarus, M. (2005), Bring them back alive, Nature 438, 40.
[10] Orớ, J. (1961), Comets and the formation of biochemical compounds on the primitive earth, Nature, 190, 389-390.
[11] Cooper, G., Kimmich, N., Belisle, W., Sariana, J., Brabham, K. & Garrel, L. (2001), Carbonaceous meteorites as a source of sugar-related organic compounds for the early earth, Nature 404, 879-883.
[12] Wächterhäuser, G. (2000), Life as we don't know it, Science 289, 1307-1308
[13] Cody, G. D. (2005), Geochemical connections to primitive metabolism, Elements 1, 139-143.
[14] Trolez, Y., Guillemin, J.-C. (2005), Synthesis and Characterization of 2,4-Pentadiynenitrile—A Key Compound in Space Science, Angewandte Chemie Internatinal Edition, 44, 7224-7226.
[15]* Eschenmoser, A. (1999), Chemical etiology of nucleic acid structure, Science 284, 2118-2124
[16] Beier M. (1999), Chemical etiology of nucleic acid structure: comparing pentopyranosyl-(2'->4') oligonucleotides with RNA, Science 283, 699-703
[17] Bernal, J. D. (1951), The physical basis of life. London: Routledge and Keagan Paul.
[18]* Sowerby, S. J., Cohn, C. A., Heckl, W. M. & Holm, N. G. (2001), differential adsoption of nucleic acid bases: relevance to the origin of life, Proc. Natl. Acad. Sci. USA 98, 820-822
[19] Sumner, D. Y. (1997), Carbonate precipitation and oxygen stratification in late archean seawater as deduced from facies and stratigraphy of the gamohaan and frisco formations, transvaal supergroup, south africa, American Journal of Science 29, 455-487.
[20] H.Lowenstam and S.Weiner, On Biomineralization, Oxford University Press, Oxford, UK, 1989.
[21] Hazen, R. M., Filley, T. & Goodfriend, G. A. (2001), Selective adsorption of L- and D- amino acids on calcite: Implications for biochemical homochirality, Proc. Natl. Acad. Sci. USA 98, 5487-5490.
[22] Hazen, R. M. (2005b), Mineral surfaces and the prebiotic selection and organization of biomolecules., Presidential address to the mineralogical society of america, october 18, 2005.
[23]* Angyal, S. J. (1969), The composition and conformation of sugars in solution, Angewandte Chemie International Edition 8, n°3, 157-226
[24] Sigma Alditch catalog: http://www.sigmaaldritch.com/Area_of_Interest/Analytical_Chromatography /Analytical_Reagents/Derivatization_Reagents/Silylation.html
[25] Li, Q., Ricardo, A., Benner, S. A., Winefordner, J. D. & Powell, D. H. (2005), Desorption/Ionization on porous silicon mass spectrometry studies on pentose-borate complexes, Analytical chemistry 77, 4503-4508
[26] Sweeley,C. C., Bentley, R., Makita, M. & Wells, W. W. (1963), Gas-Liquid Chromatography of trimethylsilyl Derivatives of sugars and Related Substances , Journal of the Chemical Society,
85, 2497- 2507
[27] Biermann, C. J. & McGinnis, G. D., Analysis of carbohydrates by GLC and MS (1989), CRC PRESS, p. 46; 89
[28]* Sawardeker, J. S., Sloneker, J. H., Jeanes, A. (1965), Quantitative Determination of monosaccharides as their alditol acetates by gas liquid chromatography, Analytical chemistry 37, 1602-1604.
[29] Kuzio, J. & Kropinski, A. M. (1983), O-antigen conversion in peseudomonas aeruginosa PAO1 by bacteriophage D3, Journal of Bacteriology 155, 204-212.
[30] Flaherty, D. K., Deack, P. H., Cooper, J., Bishop, K., Winzenberger, P. A., Smith, L. R., Bynrun, L. & Witner, W. B.(1984), Bacterial endotoxin isolated from water spray air humidification system as a putative agent of occupation-related lung disease, Infectiology and Immunology 43, 206-212.
[31]* Ricardo A., M. A., Carrigan, M. A., Olcott, A. N. & Benner, S. A. (2004), Borate minerals stabilize ribose, Science 303, 196.
[32]* Larralde, R., Robertson, M. P. & Miller, S. L. (1995), Rates of decomposition of ribose and other sugars: Implications for chemical evolution, Proc. Natl. Acad. Sci. USA 92, 8158-8160
37
[34] Perry, T. D. 4, Cygan, R. T. & Mitchell, R. (2006), Molecular models of alginic acid: Interactions with calcium ions and calcite surfaces, Geochemica and Cosmochemica acta 70, 3508-3532
[35] Sverjenski, D. A. & Fukushi, K. (2006). Anion adsorption on oxide surfaces: Inclusion of the water dipole in modeling the electrostatics of ligand exchange, Environmental science and technology 40, 263-271.
[36] Stumm, W. (1992), Chemistry of the solid-water interface. New York, John Wiley and Sons., Inc. 428 pp [37] Pokrovski, O. S., Schott, J. & Thomas, F. (1999), Processes at the magnesium-bearing cabonates/solution interface. A surface speciation model for magnesite, Geochemica and Cosmochemica acta 63, 863-880.
[38] Maurette, M. (1998), Carbonaceous micrometeorites and the origin of life. Origin of life and evolution of Biosphere 378, 355-359.
[39] Brack, A. (2005), From the origin of life on earth to life in the universe, Lectures in astrobiology, Vol1, Spinger.
[40] Miyakawa, S., Yamanashi, H., Kobayashi, K, Cleaves, H. J. & Miller, S. L. (2002), Prebiotic synthesis from CO atmospheres: Implications for the origins of life, Proc. Natl. Acad. Sci. USA 99, 14628-14631
[41] Miller, S. L., Schlesinger, G. (1984), Carbon and energy yields in prebiotic synthesis using atmospheres containing CH4, CO and CO2, Origins of Life, 14, 83-90.
[42] Chyba, C.F., Thomas, P.J., Brookshaw, L., Sagan, C. (1990), Cometary delivery of organic molecules to the early earth, Science 249, 249-373.
[43] Levy, M., Miller, S. L. (1998), The stability of the RNA bases: Implications for the origin of life, Proc. Natl. Acad. Sci. USA 95, 7933-7938
[44]* Springsteen, G. & Joyce, G. F. (2004), Selective derivatization and sequestration of ribose from a prebiotic mix, Journal of the American Chemical Society 126, 9578-9583
[45] Hanczyc, M. M., Fujikawa, M. M.& Szostak, J. W. (2003), Experimental models of primitive cellular compartments: Encapsulation, gowth and division, Science 302, 618-622
[46] Chen I. A., Saleh-Ashtiani, K. & Szostak, J. (2005), RNA catalysis in model protocell vesicles, Journal of the Amercian Chemical society, 127, 13213-13219
[47] Chen, I. A., Roberts, R. W. & Szostak, J. W. (2004), The emergence of competition between model protocells, Science 305, 1474-1476
[48] Forterre, P. (1995 a) thermoreduction, a hypothesis for the origin of prokaryotes, C. R. Acad. Sci. Paris 318, 415-422.
[49] Kashefi, K. & Lovley, D. R. (2003), Extending the upper temperature limit for life, Science 301, 934. [] [50] Forterre, P., Confalonieri, F., Charbonnier, F., Duguet, M. (1995b), Speculations on the origin of life and thermophily, Origin of life and evolution of the Biosphere 25, 235-249.
[51] Gribaldo, S., Forterre, P. (2005), Looking for the most primitive life form, Lectures in astrobiology, Vol1, Spinger.
[52] Joyce, G. F., Schwartz, A. W., Miller, S. L. & Orgel, L. E. The case for an ancestral genetic system simple analogues of the nucleotides, Proc. NatAcad. Sci. USA 84, 4398-4402
[53] Nielsen, P. E. (1993), Peptide nucleic acid (PNA): A model structure for the primordial genetic material? Origins of life and evolution of the Biosphere 23, 323-327.
[54] Orgel, L. (1990), A simpler nucleic acid, Science 290, 1306-1307.
[55] Schöning, K.-U., Scholz, P., Guntha, S., WU, X., Krishnamurthy, R., Eshenmoser, A. (2000), Chemical etiology of nucleic acid structure: the alpha-threofuranosyl-(3'->2') oligonucleotide system, Science 290, 1347-1351
[56] Ehrenfreund, P., Rasmussen, S., Cleaves, J. & Chen, L. (2006), Experimentaly tracing the key steps in the origin of life: The aromatic world, Astrobiology 6, 3, 490-520
[57]* Borchers, A. T., Davis, P. A. & Gershwin, M. E. (2004), The asymmetry of existence: do we owe our existence to cold dark matter and the weak force?, Experimental Biology and Medicine 229, 21-32
[58] Curie, P. (1894), Sur la symétrie dans les phénomènes physiques, symétrie d'un champ électrique ou magnétique, Journal de Chimie Physique, 3 éme série, t.3, 393-402.
[59] Pizzarello, S., Zolensky, M., Turk, K. A. (2003), Nonracemic isovaline in the Murchison and Murray meteorites, Geochemica and Cosmochemica Acta 64, 329-338.
[60]* Soai, K., Osanai, S., Kadowaki, K., Yonebuka, S., Shibata, T. & Sato, I. (1999), D- and L- Quartz-promoted highly enantioselective synthesis of chiral organic compound, Journal of the American Chemical Society 121, 1235-1236.
[61] Monod, J. (1970), Le hasard et la nécessité. Le seuil, Paris.
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