2012年4月23日月曜日

生物の起源


Allègre, C. J., Manhès, G. & Göpel, C. The age of the Earth. Geochim. Cosmochim. Acta 59, 1445-1456 (1995).

Allwood, A. C., Walter, M. R., Kamber, B. S., Marshall, C. P. & Burch, I. W. Stromatolite reef from the Early Archaean era of Australia. Nature 441, 714-718 (2006).

Amelin, Y. A tale of early Earth told in zircons. Science 310, 1914-1915 (2005).

Amelin, Y., Krot, A. N., Hutcheon, I. D. & Ulyanov, A. A. Lead isotopic ages of chondrules and calcium-aluminum-rich inclusions. Science 297, 1678-1683 (2002).

Anders, E. Pre-biotic organic matter from comets and asteroids. Nature 342, 255-257 (1989).

Arrhenius, G. & Lepland, A. Accretion of Moon and Earth and the emergence of life. Chem. Geol. 169, 69-82 (2000).

Bachmann, P. A., Luisi, P. L. & Lang, J. Autocatalytic self-replicating micells as models for prebiotic structures. Nature 357, 57-59 (1992).

Bada, J. L., Bigham, C. & Miller, S. L. Impact melting of frozen oceans on the early Earth: Implications for the origin of life. Proc. Natl. Acad. Sci. USA 91, 1248-1250 (1994).

Baldauf, S. L., Palmer, J. D. & Doolittle, W. F. The root of the universal tree and the origin of eukaryotes based on elongation factor phylogeny. Proc. Natl. Acad. Sci. USA 93, 7749-7754 (1996).

Barns, S. M., Delwiche, C. F., Palmer, J. D. & Pace, N. R. Perspectives on archaeal phylogeny, thermophily and monophyly from environmental rRNA sequences. Proc. Natl. Acad. Sci. USA 93, 9188-9193 (1996).

Bar-Nun, A. & Chang, S. Photochemical reactions of water and carbon monoxide in Earth's primitive atmosphere. Geophys. Res. 88, 6662-6672 (1983).

Bartel, D. P. & Szostak, J. W. Isolation of new ribozymes from a large pool of random sequences. Science 261, 1411-1418 (1993).

Battistuzzi, F. U., Feijao, A. & Hedges, S. B. A genomic timescale of prokaryote evolution: Insights into the origin of methanogenesis, phototrophy, and the colonization of land. BMC Evol. Biol. 4, 44 (2004).

Baymann, F. et al. The redox protein construction kit: Pre-last universal common ancestor evolution of energy-conserving enzymes. Phil. Trans. R. Soc. Lond. B 358, 267-274 (2003).

Bennett, C. L. et al. First-year Wilkinson Microwave Anisotropy Probe (WMAP) observations: preliminary maps and basic results. Astrophys. J. Suppl. 148, 1-27 (2003).

Bernstein, M. P., Dworkin, J. P., Sandford, S. A., Cooper, G. W. & Allamandola, L. J. Racemic amino acids from the ultraviolet photolysis of interstellar ice analogues. Nature 416, 401-403 (2002).

Bernstein, M. P., Sandford, S. A. & Allamandola, L. J. Life's far-flung raw materials. Sci. Am. 281(1) 42-49 (1999).

Bolli, M., Micura, R. & Eschenmoser, A. Pyranosyl-RNA: Chiroselective self-assembly of base sequences by ligative oligomerization of tetranucleotide-2',3'-cyclophosphates (with a commentary concerning the origin of biomolecular homochirality). Chem. Biol. 4, 309-320 (1997).

Bowring, S. A., Williams, I. S. & Compston, W. 3.96 Ga gneisses from the Slave province, Northwest Territories, Canada. Geology 17, 971-975 (1989).

Bowring, S. A. & Williams, I. S. Priscoan (4.00-4.03 Ga) orthogneisses from northwestern Canada. Contrib. Mineral. Petrol. 134, 3-16 (1999).

Brasier, M. D. et al. Questioning the evidence for Earth's oldest fossils. Nature 416, 76-81 (2002).


雨が停滞前線を伴うときに何が起こりますか?

Brasier, M., Green, O., Lindsay, J. & Steele, A. Earth's oldest (∼ 3.5 Ga) fossils and the 'Early Eden hypothesis': questioning the evidence. Orig. Life Evol. Biosph. 34, 257-269 (2004).

Brasier, M., McLoughlin, N., Green, O. & Wacey, D. A fresh look at the fossil evidence for early Archaean cellular life. Phil. Trans. R. Soc. B. 361, 887-902 (2006).

Brochier, C. & Philippe, H. A non-hyperthermophilic ancestor for Bacteria. Nature 416, 76-81 (2002).

Cairns-Smith, A. G., Ingram, P. & Walker, G. L. Formose production by minerals: Possible relevance to the origin of life. J. Theor. Biol. 35, 601-604 (1972).

Carlton, J. M. Draft genome sequence of the sexually transmitted pathogen Trichomonas vaginalis. Science 315, 207-212 (2007).

Catling, D. C. Comment on "a hydrogen-rich early Earth atmosphere. Science 311, 38a (2006).

Cavalier-Smith, T. The neomuran origin of archaebacteria, the negibacterial root of the universal tree and bacterial megaclassification. Int. J. Syst. Evol. Microbiol. 52, 7-76 (2002a).

Cavalier-Smith, T. The phagotrophic origin of eukaryotes and phylogenetic classification of Protozoa. Int. J. Syst. Evol. Microbiol. 52, 297-354 (2002b).

Chyba, C. F. The violent environment of the origin of life: Progress and uncertainties. Geochim. Cosmochim. Acta 57, 3351-3358 (1993).

Chyba, C. F. Rethinking Earth's early atmosphere. Science 308, 962-963 (2005).

Chyba, C. & Sagan, C. Endogenous production, exogenous delivery and impact-shock synthesis of organic molecules: An inventory for the origins of life. Nature 355, 125-132 (1992).

Cleland, C. E. & Chyba, C. F. Defining life. Orig. Life Evol. Biosph. 32, 387-393 (2002).

Cohen, B. A., Swindle, T. D. & Kring, D. A. Support for the lunar cataclysm hypothesis from lunar meteorite impact melt ages. Science 290, 1754-1756 (2000).

Cooper, G. et al. Carbonaceous meteorites as a source of sugar-related organic compounds for the early Earth. Nature 414, 879-883 (2001).

Crick, F. H. C. & Orgel, L. E. Directed Panspermia. Icarus 19, 341-346 (1973).

Cronin, J. R. in The Molecular Origins of Life (ed Brack, A.) 119-146 (Cambridge University Press, Cambridge, 1998).

Cronin, J. R. & Pizzarello, S. Enantiometric excesses in meteoritic amino acids. Science 275, 951-955 (1997).

Culler, T. S., Becker, T. A., Muller, R. A. & Renne, P. R. Lunar impact history from 40Ar/39Ar dating of glass spherules. Science 287, 1785-1788 (2000).

Dauphas, N. The U/Th production ratio and the age of the Milky Way from meteorites and Galactic halo stars. Nature 435, 1203-1205 (2005).

Deamer, D. W. Boundary structures are formed by organic components of the Murchison carbonaceous chondrite. Nature 317, 792-794 (1985).

Deamer, D. W. in The Molecular Origins of Life (ed Brack, A.) 189-205 (Cambridge University Press, Cambridge, 1998).

Deamer, D. W. & Pashley, R. M. Amphiphilic components of the Murchison carbonaceous chondrite: Surface properties and membrane formation. Orig. Life Evol. Biosph. 19, 21-38 (1989).

De Graaf R. M., Visscher, J. & Schwartz, A. W. Reactive phophonic acids as prebiotic carriers of phosphorus. J. Mol. Evol. 44, 237-241 (1997).

De Gregorio, B. T. & Sharp, T. G. Determining the biogenicity of microgossils in the Apex chert, Western Australia, using transmission electron microscopy. Lunar Planet. Sci. XXXIV 1267 (2003).


なぜ月はダウンして行くのですか

Delsemme, A. H. in The Molecular Origins of Life (ed Brack, A.) 100-118 (Cambridge University Press, Cambridge, 1998).

Dolezal, P. et al. Giardia mitosomes and trichomonad hydrogenosomes share a common mode of protein targeting. Proc. Natl. Acad. Sci. USA 102, 10924-10929 (2005).

Doolittle, W. F. Phylogenetic classification and the universal tree. Science 284, 2124-2129 (1999).

Doudna, J. A. & Szostak, J. W. RNA-catalysed synthesis of complementary-strand RNA. Nature 339, 519-522 (1989).

Doudna, J. A., Couture, S. & Szostak, J. W. A multisubunit ribozyme that is a catalyst of and template for complementary strand RNA synthesis. Science 251, 1605-1608 (1991).

Dworkin, J. P., Deamer, D. W., Sandford, S. A. & Allamandola, L. F. Self-assembling amphiphilic molecules: Synthesis in simulated interstellar/precometary ices. Proc. Natl. Acad. Sci. USA 98, 815-819 (2001).

Eiler, J. M. The oldest fossil or just another rock? Science 317, 1046-1047 (2007).

Ekland, E. H. & Bartel, D. P. RNA-catalysed RNA polymerization using nucleoside triphosphates. Nature 382, 373-376 (1996).

Ekland, E. H., Szostak, J. W. & Bartel, D. P. Structurally complex and highly active RNA ligases derived from random RNA sequences. Science 269, 364-370 (1995).

Embley, T. M. & Martin, W. Eukaryotic evolution, changes and challenges. Nature 440, 623-630 (2006).

Eschenmoser, A. Chemical etiology of nucleic acid structure. Science 284, 2118-2124 (1999).

Fedo, C. M. & Whitehouse, M. J. Metasomatic origin of quartz-pyroxene rock, Akilia, Greenland, and implications for Earth's earliest life. Science 296, 1448-1452 (2002a).

Fedo, C. M. & Whitehouse, M. J. Origin and significance of Archean quartzose rocks at Akilia, Greenland. Science 298, 917a (2002b).

Feng, D.-F., Cho, G. & Doolittle, R. F. Determining divergence times with a protein clock: Update and reevaluation. Proc. Natl. Acad. Sci. 94, 13028-13033 (1997).

Ferris, J. P. Montmorillonite-catalysed formation of RNA oligomers: The possible role of catalysis in the origins of life. Phil. Trans. R. Soc. B 361, 1777-1786 (2006).

Ferris, J. P., Sanchez, R. A. & Orgel, L. E. Studies in prebiotic synthesis III. Synthesis of pyrimidines from cyanoacetylene and cyanate. J. Mol. Biol. 33, 693-704 (1968).

Ferris, J. P., Hill Jr, A. R., Liu, R. & Orgel, L. E. Synthesis of long prebiotic oligomers on mineral surfaces. Nature 381, 59-61 (1996).

Frank, F. C. On spontaneous asymmetric synthesis. Biochim. Biophys. Acta 11, 459-463 (1953).

Friend, C. R. L., Nutman, A. P. & Bennett, V. C. Origin and significance of Archean quartzose rocks at Akilia, Greenland. Science 298, 917a (2002).

Fuller, W. D., Sanchez, R. A. & Orgel, L. E. Studies in previotic synthesis: VI. Synthesis os purine nucleosides. J. Mol. Biol. 67, 25-33 (1972).

Furnes, H., Barnerjee, N. R., Muehlenbachs, K., Staudigel, H. & de Wit, M. Early life recorded in Archean pillow lavas. Science 304, 578-581 (2004).

Futamura, Y. & Yamamoto, K. Hydrothermal synthesis of oligoglycines with adiabatic expansion cooling. Viva Origino 33, 269-274 (2005).

Gabel, N. W. & Ponnamperuma, C. Model for origin of monosaccharides. Nature 216, 453-455 (1967).

Galer, S. J. G. Interrelationships between continental freeboard, tectonics and mantle temperature. Earth Planet. Sci. Lett. 105, 214-228 (1991).


カンガルーは何を食べていない

Galtier, N., Tourasse, N. & Gouy, M. A nonhyperthermophilic common ancestor to extant life forms. Science 283, 220-221 (1999).

Gao, B. & Gupta, R. S. Phylogenomic analysis of proteins that are distinctive of Archaea and its main subgroups and the origin of methanogenesis. BMC Genomics 8 86 (2007).

Garcia-Ruiz, J. M. et al. Self-assembled silica-carbonate structures and detection of ancient microfossils. Science 302, 1194-1197 (2003).

Gaucher, E., Thomson, J. M., Burgan, M. F. & Benner, S. A. Inferring the palaeoenvironment of ancient bacteria on the basis of resurrected proteins. Nature 425, 285-288 (2003).

Gibson, Jr., E. K. et al. Observation and analysis of in situ carbonaceous matter in Naklha: Part II. Lunar Planet. Sci. XXXVII, 2039 (2006).

Gilbert, W. The RNA world. Nature 319, 618 (1986).

Glikson, A. Comment on "zircon thermometer reveals minimum melting conditions on earliest Earth" I. Science 311, 779a (2006).

Gogarten, J. P. et al. Evolution of the vacuolar H+-ATPase: Implications for the origin of eukaryotes. Proc. Natl. Acad. Sci. USA 86, 6661-6665 (1989).

Gomes, R., Levison, H. F., Tsiganis, K. & Morbidelli, A. Origin of the cataclysmic Late Heavy Bombardment period of the terrestrial planets. Nature 435, 466-469 (2005).

Green, R. & Szostak, J. W. Selection of a ribozyme that function as a superior template in a self-copying reaction. Science 258, 1910-1915 (1992).

Gribaldo, S. & Brochier-Armanet, C. The origin and evolution of Archaea: A state of the art. Philos. Trans. R. Soc. Lond., B, Biol. Sci. 361, 1007-1022 (2006).

Gupta, R. S. Evolutionary relationships among photosynthetic bacteria. Photosynth. Res. 76, 173-183 (2003).

Gupta, R. S. & Griffiths, E. Critical issues in bacterial phylogeny. Theor. Popul. Biol. 61, 423-434 (2002).

Hahn, J. When giants roamed. Nature 435, 432-433 (2005).

Haraguchi, H. Multielement profiling analyses of biological, geochemical, and environmental samples as studied by analytical atomic spectrometry. Bull. Chem. Soc. Jpn. 72, 1163-1186 (1999).

Haraguchi, H. Metallomics as integrated biometal science. J. Anal. At. Spectrom. 19, 5-14 (2004).

Harrison, T. M. et al. Heterogeneous Hadean hafnium: Evidence of continental crust at 4.4 to 4.5 Ga. Science 310, 1947-1950 (2005).

Hedges, S. B. & Kumar, S. Genomic clocks and evolutionary timescales. Trends Genet. 19, 200-206 (2003).

Hennet, R. J.-C., Holm, N. G. & Engel, M. H. Abiotic synthesis of amino acids under hydrothermal conditions and the origin of life: A perpetual phenomenon? Naturwissenschaften 79, 361-365 (1992).

Hohn, M. J., Park, H.-S., O'Donoghue, P., Schnitzbauer, M. & Söll, D. Emergence of the universal genetic code imprinted in an RNA world. Proc. Natl. Acad. Sci. USA 103, 18095-18100 (2006).

Holland, H. D. & Kasting, J. F. in The Proterozoic Biosphere: a Multidisciplinary Study (eds Schopf, J. W. & Klein, C.) 21-24 (Cambridge University Press, Cambridge, 1992).

Holm, N. G. & Andersson, E. M. in The Molecular Origins of Life (ed Brack, A.) 86-99 (Cambridge University Press, Cambridge, 1998).

Huber, C., Eisenreich, W., Hecht, S. & Wächtershäuser, G. A possible primordial peptide cycle. Science 301, 938-940 (2003).

Huber, C. & Wächtershäuser, G. α-hydroxy and α-amino acids under possible Hadean, volcanic origin-of-life conditions. Science 314, 630-632 (2006).


池原健二 生命の起源についての RNA ワールド仮説は正しいか?(生命はタンパク質ワールドから生まれた!) 生物科学 51, 43-53 (1999).

Ikehara, K. Origins of gene, genetic code, protein and life. Viva Origino 29, 66-85 (2001).

池原健二 GADV 仮説―生命起源を問い直す (京都大学出版会, 京都, 2006).

Imai, E., Honda, H., Hatori, K., Brack, A. & Matsuno, K. Elongation of oligopeptides in a simulated submarine hydrothermal system. Science 283, 831-833 (1999).

磯崎行雄 ほか "35億年前最古ストロマトライト"の正体ー西オーストラリア,ピルバラ産,太古代中央海嶺の熱水性堆積物ー 月刊地球 17, 476-481 (1995).

Ito, M., Handa, N. & Yanagawa, H. Architecture of models for prebiotic synthesis of proteins: The structure and function of polypeptides synthesized in a fluctuating system. Orig. Life 16, 494-495 (1986).

Iwabe, N., Kuma, K., Hasegawa, M., Osawa, S. & Miyata, T. Evolutionary relationship of archaebacteria, eubacteria, and eukaryotes inferred from phylogenetic trees of duplicated genes. Proc. Natl. Acad. Sci. USA 86, 9355-9359 (1989).

Jacobsen, S. B. How old is planet Earth? Science 300, 1513-1514 (2003).

James, K. D. & Ellington, A. D. The fidelity of template-directed oligonucleotide ligation and the inevitability of polymerase function. Orig. Life Evol. Biosph. 29, 375-390 (1999).

Johnston, W. K., Unrau, P. J., Lawrence, M. S., Glasner, M. E. & Bartel, D. P. RNA-catalysed RNA polymerization: Accurate and general RNA-templated primer extension. Science 292, 1319-1325 (2001).

Joyce, G. in Origins of Life: the Central Concepts (eds Deamer, D. W. & Fleischaker, G. R.) xi-xii (Jones and Bartlett, Boston, 1994).

Joyce, G. F. The antiquity of RNA-based evolution. Nature 418, 214-221 (2002a).

Joyce, G. F. Booting up life. Nature 420, 278-279 (2002b).

Joyce, G. F., Schwartz, A. W., Miller, S. L. & Orgel, L. E. The case for an ancestral genetic system involving simple analogues of the nucleotides. Proc. Natl. Acad. Sci. USA 84, 4398-4402 (1987).

Karhu, J. & Epstein, S. The implication of the oxygen isotope records in coexisting cherts and phosphates. Geochim. Cosmochim. Acta 50, 1745-1756 (1986).

Kasamatsu, T., Kaneko, T., Saito, T. & Kobayashi, K. Formation of organic compounds in simulated interstellar media with high energy particles. Bull. Chem. Soc. Jpn. 70, 1021-1026 (1997).

Kasting, J. F. Earth



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