Vznik života (Czech Wikipedia)

Analysis of information sources in references of the Wikipedia article "Vznik života" in Czech language version.

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archive.org

archive.today

astrobiology.com

  • COWING, Keith. Could Life Have Survived a Fall to Earth?. astrobiology.com [online]. 2013-09-12 [cit. 2022-12-26]. Dostupné online. (anglicky) 

books.google.com

  • RAUCHFUSS, Horst. Chemical Evolution and the Origin of Life. [s.l.]: Springer, 2008. Dostupné online. 

cambridge.org

  • WÄCHTERSHÄUSER, Günter. Origin of life in an iron–sulfur world. In: BRACK, Andri. The Molecular Origins of Life. [s.l.]: Cambridge University Press, 1998. Dostupné online. DOI 10.1017/CBO9780511626180.011. S. 206–218. (anglicky)

carnegiescience.edu

hazen.carnegiescience.edu

cell.com

confex.com

gsa.confex.com

darwin-online.org.uk

  • "It is often said that all the conditions for the first production of a living organism are now present, which could ever have been present. But if (and oh! what a big if!) we could conceive in some warm little pond, with all sorts of ammonia and phosphoric salts, light, heat, electricity, &c., present, that a proteine compound was chemically formed ready to undergo still more complex changes, at the present day such matter would be instantly devoured or absorbed, which would not have been the case before living creatures were formed." publikováno v: Darwin, Francis (ed.), 1887: The life and letters of Charles Darwin, including an autobiographical chapter. Volume 3. London: John Murray. p. 18

degruyter.com

  • FITZ, Daniel; REINER, Hannes; RODE, Bernd Michael. Chemical evolution toward the origin of life. S. 2101–2117. Pure and Applied Chemistry [online]. 2007. Roč. 79, čís. 12, s. 2101–2117. Dostupné online. DOI 10.1351/pac200779122101. (anglicky) 

discovermagazine.com

  • Did Life Evolve in Ice? - Arctic & Antarctic [online]. DISCOVER Magazine [cit. 2008-07-03]. Dostupné online. 

doi.org

dx.doi.org

  • GLANSDORFF, N. About the last common ancestor, the universal life-tree and lateral gene transfer: a reappraisal. S. 177–185. Molecular Microbiology [online]. 2000-10. Roč. 38, čís. 2, s. 177–185. Dostupné online. DOI 10.1046/j.1365-2958.2000.02126.x. PMID 11069646. (anglicky) 
  • TASHIRO, Takayuki; ISHIDA, Akizumi; HORI, Masako; IGISU, Motoko; KOIKE, Mizuho; MÉJEAN, Pauline; TAKAHATA, Naoto, SANO, Yuji; KOMIYA, Tsuyoshi. Early trace of life from 3.95 Ga sedimentary rocks in Labrador, Canada. S. 516–518. Nature [online]. Macmillan Publishers Limited, 27. září 2017. Svazek 549, čís. 7673, s. 516–518. Dostupné online. ISSN 1476-4687. DOI 10.1038/nature24019. (anglicky) 
  • MORSE, J. W., MacKenzie, F. T. Hadean Ocean Carbonate chemistry. Aquatic Geochemistry. 1998, roč. 4, s. 301–319. DOI 10.1023/A:1009632230875. 
  • WILDE, S. A., MacKenzie, F. T.; Valley, J. W.; Peck, W. H.; Graham, C. M. Evidence from detrital zircons for the existence of continental crust and oceans on the Earth 4.4 Gyr ago. Nature. 2001, roč. 409, čís. 6817, s. 175–178. DOI 10.1038/35051550. PMID 11196637. 
  • SLEEP, N. H., Zahnle, K. J.; Kasting, J. K.; Morowitz, H. J. Annihilation of ecosystems by large asteroid impacts on early Earth. Nature. 1989, roč. 342, čís. 6246, s. 139–142. DOI 10.1038/342139a0. PMID 11536616. 
  • MAHER, K. A., Stevenson, D. J. Impact frustration of the origin of life. Nature. 1988, roč. 331, čís. 6157, s. 612–614. DOI 10.1038/331612a0. PMID 11536595. 
  • BALME, D. M. Development of Biology in Aristotle and Theophrastus: Theory of Spontaneous Generation. Phronesis: a journal for Ancient Philosophy. 1962, roč. 7, čís. 1–2, s. 91–104. DOI 10.1163/156852862X00052. 
  • ORÓ, J.; MILLER, Stanley L.; LAZCANO, Antonio. The origin and early evolution of life on Earth. S. 317–356. Annual Review of Earth and Planetary Sciences [online]. 1990-05. Roč. 18, čís. 1, s. 317–356. Dostupné online. DOI 10.1146/annurev.ea.18.050190.001533. PMID 11538678. (anglicky) 
  • LAZCANO, Antonio; MILLER, Stanley L. On the Origin of Metabolic Pathways. S. 424–431. Journal of Molecular Evolution [online]. 1999-10. Roč. 49, čís. 4, s. 424–431. Dostupné online. DOI 10.1007/PL00006565. PMID 10486000. (anglicky) 
  • BATTISTUZZI, Fabia U; FEIJAO, Andreia; HEDGES, S Blair. [No title found]. S. 44–58. BMC Evolutionary Biology [online]. 2004. Roč. 4, čís. 1, s. 44–58. Dostupné online. DOI 10.1186/1471-2148-4-44. PMID 15535883. (anglicky) 
  • BECERRA, Arturo; DELAYE, Luis; LAZCANO, Antonio; ORGEL, Leslie E. Protein Disulfide Oxidoreductases and the Evolution of Thermophily: Was the Last Common Ancestor a Heat-Loving Microbe?. S. 296–303. Journal of Molecular Evolution [online]. 2007-10-09. Roč. 65, čís. 3, s. 296–303. Dostupné online. DOI 10.1007/s00239-007-9005-0. PMID 17726569. 
  • ORGEL, L. E. Prebiotic adenine revisited: Eutectics and photochemistry. Origins of Life and Evolution of Biospheres. 2004, roč. 34, s. 361–369. Dostupné online. DOI 10.1023/B:ORIG.0000029882.52156.c2. 
  • ROBERTSON, M. P., Miller, S. L. An efficient prebiotic synthesis of cytosine and uracil. Nature. 1995, roč. 375, čís. 6534, s. 772–774. DOI 10.1038/375772a0. PMID 7596408. 
  • BADA, J. L., Bigham, C., Miller, S. L. Impact Melting of Frozen Oceans on the Early Earth: Implications for the Origin of Life. Proceedings of the National Academy of Sciences. 1994, roč. 91, čís. 4, s. 1248–1250. Dostupné online. DOI 10.1073/pnas.91.4.1248. PMID 11539550. 
  • CLEAVES, H. James; MILLER, Stanley L. Oceanic protection of prebiotic organic compounds from UV radiation. S. 7260–7263. Proceedings of the National Academy of Sciences [online]. 1998-06-23. Roč. 95, čís. 13, s. 7260–7263. Dostupné online. DOI 10.1073/pnas.95.13.7260. PMID 9636136. (anglicky) 
  • DI GIULIO, Massimo. The ocean abysses witnessed the origin of the genetic code. S. 7–12. Gene [online]. 2004. Roč. 346, s. 7–12. Dostupné online. DOI 10.1016/j.gene.2004.07.045. PMID 15716095. (anglicky) 
  • KÖNNYŰ, Balázs; CZÁRÁN, Tamás; SZATHMÁRY, Eörs. Prebiotic replicase evolution in a surface-bound metabolic system: parasites as a source of adaptive evolution. S. 267. BMC Evolutionary Biology [online]. 2008-12. Roč. 8, čís. 1, s. 267. Dostupné online. DOI 10.1186/1471-2148-8-267. (anglicky) 
  • LINE, Martin A. The enigma of the origin of life and its timing. S. 21–27. Microbiology [online]. 2002. Roč. 148, čís. 1, s. 21–27. Dostupné online. DOI 10.1099/00221287-148-1-21. (anglicky) 
  • LAZCANO, Antonio; MILLER, Stanley L. The Origin and Early Evolution of Life: Prebiotic Chemistry, the Pre-RNA World, and Time. S. 793–798. Cell [online]. 1996-06. Roč. 85, čís. 6, s. 793–798. Dostupné online. DOI 10.1016/s0092-8674(00)81263-5. PMID 8681375. (anglicky) 
  • FITZ, Daniel; REINER, Hannes; RODE, Bernd Michael. Chemical evolution toward the origin of life. S. 2101–2117. Pure and Applied Chemistry [online]. 2007. Roč. 79, čís. 12, s. 2101–2117. Dostupné online. DOI 10.1351/pac200779122101. (anglicky) 
  • CARNY, Ohad; GAZIT, Ehud. A model for the role of short self‐assembled peptides in the very early stages of the origin of life. S. 1051–1055. The FASEB Journal [online]. 2005-07. Roč. 19, čís. 9, s. 1051–1055. Dostupné online. DOI 10.1096/fj.04-3256hyp. PMID 15985527. (anglicky) 
  • RUSSELL, Michael. First Life. S. 32. American Scientist [online]. 2006. Roč. 94, čís. 1, s. 32. Dostupné online. DOI 10.1511/2006.1.32. (anglicky) 
  • BADA, Jeffrey L. How life began on Earth: a status report. S. 1–15. Earth and Planetary Science Letters [online]. 2004-09. Roč. 226, čís. 1–2, s. 1–15. Dostupné online. DOI 10.1016/j.epsl.2004.07.036. (anglicky) 
  • WÄCHTERSHÄUSER, Günter. Origin of life in an iron–sulfur world. In: BRACK, Andri. The Molecular Origins of Life. [s.l.]: Cambridge University Press, 1998. Dostupné online. DOI 10.1017/CBO9780511626180.011. S. 206–218. (anglicky)
  • RUSSELL, M. J.; HALL, A. J.; MELLERSH, A. R. On the Dissipation of Thermal and Chemical Energies on the Early Earth. In: IKAN, R. Natural and Laboratory-Simulated Thermal Geochemical Processes. [s.l.]: Springer, 2003. Dostupné online. DOI 10.1007/978-94-017-0111-2_10. S. 325–388. (anglicky)
  • FERRIS, James P. Mineral Catalysis and Prebiotic Synthesis: Montmorillonite-Catalyzed Formation of RNA. S. 145–149. Elements [online]. 2005-06-01. Roč. 1, čís. 3, s. 145–149. Dostupné online. DOI 10.2113/gselements.1.3.145. (anglicky) 
  • BIONDI, Elisa; BRANCIAMORE, Sergio; MAUREL, Marie-Christine; GALLORI, Enzo. Montmorillonite protection of an UV-irradiated hairpin ribozyme: evolution of the RNA world in a mineral environment. BMC Evolutionary Biology [online]. 2007-08. Roč. 7. Dostupné online. DOI 10.1186/1471-2148-7-S2-S2. (anglicky) 
  • HAZEN, R. M. Genesis: Rocks, Minerals, and the Geochemical Origin of Life. S. 135–137. Elements [online]. 2005-06-01. Roč. 1, čís. 3, s. 135–137. Dostupné online. DOI 10.2113/gselements.1.3.135. (anglicky) 
  • PARSONS, Ian; LEE, Martin R.; SMITH, Joseph V. Biochemical evolution II: Origin of life in tubular microstructures on weathered feldspar surfaces. S. 15173–15176. Proceedings of the National Academy of Sciences [online]. 1998-12-22. Roč. 95, čís. 26, s. 15173–15176. Dostupné online. DOI 10.1073/pnas.95.26.15173. PMID 9860941. (anglicky) 
  • DEAMER, David; DWORKIN, Jason P.; SANDFORD, Scott A.; BERNSTEIN, Max P.; ALLAMANDOLA, Louis J. The First Cell Membranes. S. 371–381. Astrobiology [online]. 2002-12. Roč. 2, čís. 4, s. 371–381. Dostupné online. DOI 10.1089/153110702762470482. PMID 12593777. (anglicky) 
  • MULKIDJANIAN, Armen Y. On the origin of life in the Zinc world: 1. Photosynthesizing, porous edifices built of hydrothermally precipitated zinc sulfide as cradles of life on Earth. S. 26. Biology Direct [online]. 2009. Roč. 4, čís. 1, s. 26. Dostupné online. DOI 10.1186/1745-6150-4-26. PMID 19703272. (anglicky) 
  • ROBERT, François; CHAUSSIDON, Marc. A palaeotemperature curve for the Precambrian oceans based on silicon isotopes in cherts. S. 969–972. Nature [online]. 2006-10. Roč. 443, čís. 7114, s. 969–972. Dostupné online. DOI 10.1038/nature05239. (anglicky) 
  • VLASSOV, A. V. Mini-ribozymes and freezing environment: a new scenario for the early RNA world. S. 1719–1737. Biogeosciences Discussions [online]. 2005-11-16. Roč. 2, s. 1719–1737. DOI 10.5194/bgd-2-1719-2005. (anglicky) 
  • LEVY, M., Miller, S. L., Brinton, K., Bada, J. L. Prebiotic synthesis of adenine and amino acids under Europa-like conditions. Icarus. 2000, roč. 145, čís. 2, s. 609–613. DOI 10.1006/icar.2000.6365. PMID 11543508. Bibcode 2000Icar..145..609L. 
  • TRINKS, Hauke, Schröder, W., Biebricher, C. Ice And The Origin Of Life. Origins of Life and Evolution of the Biosphere. 2005, roč. 35, čís. 5, s. 429–445. Dostupné v archivu pořízeném dne 2012-01-12. DOI 10.1007/s11084-005-5009-1. PMID 16231207. 

geoscienceworld.org

pubs.geoscienceworld.org

  • FERRIS, James P. Mineral Catalysis and Prebiotic Synthesis: Montmorillonite-Catalyzed Formation of RNA. S. 145–149. Elements [online]. 2005-06-01. Roč. 1, čís. 3, s. 145–149. Dostupné online. DOI 10.2113/gselements.1.3.145. (anglicky) 

harvard.edu

adsabs.harvard.edu

leaderu.com

  • In Pursuit of Intelligent Causes: Some Historical Background. www.leaderu.com [online]. [cit. 2017-09-18]. Dostupné online. 

liebertpub.com

microbiologyresearch.org

nature.com

  • TASHIRO, Takayuki; ISHIDA, Akizumi; HORI, Masako; IGISU, Motoko; KOIKE, Mizuho; MÉJEAN, Pauline; TAKAHATA, Naoto, SANO, Yuji; KOMIYA, Tsuyoshi. Early trace of life from 3.95 Ga sedimentary rocks in Labrador, Canada. S. 516–518. Nature [online]. Macmillan Publishers Limited, 27. září 2017. Svazek 549, čís. 7673, s. 516–518. Dostupné online. ISSN 1476-4687. DOI 10.1038/nature24019. (anglicky) 

nih.gov

ncbi.nlm.nih.gov

  • GLANSDORFF, N. About the last common ancestor, the universal life-tree and lateral gene transfer: a reappraisal. S. 177–185. Molecular Microbiology [online]. 2000-10. Roč. 38, čís. 2, s. 177–185. Dostupné online. DOI 10.1046/j.1365-2958.2000.02126.x. PMID 11069646. (anglicky) 
  • WILDE, S. A., MacKenzie, F. T.; Valley, J. W.; Peck, W. H.; Graham, C. M. Evidence from detrital zircons for the existence of continental crust and oceans on the Earth 4.4 Gyr ago. Nature. 2001, roč. 409, čís. 6817, s. 175–178. DOI 10.1038/35051550. PMID 11196637. 
  • SLEEP, N. H., Zahnle, K. J.; Kasting, J. K.; Morowitz, H. J. Annihilation of ecosystems by large asteroid impacts on early Earth. Nature. 1989, roč. 342, čís. 6246, s. 139–142. DOI 10.1038/342139a0. PMID 11536616. 
  • MAHER, K. A., Stevenson, D. J. Impact frustration of the origin of life. Nature. 1988, roč. 331, čís. 6157, s. 612–614. DOI 10.1038/331612a0. PMID 11536595. 
  • ORÓ, J.; MILLER, Stanley L.; LAZCANO, Antonio. The origin and early evolution of life on Earth. S. 317–356. Annual Review of Earth and Planetary Sciences [online]. 1990-05. Roč. 18, čís. 1, s. 317–356. Dostupné online. DOI 10.1146/annurev.ea.18.050190.001533. PMID 11538678. (anglicky) 
  • LAZCANO, Antonio; MILLER, Stanley L. On the Origin of Metabolic Pathways. S. 424–431. Journal of Molecular Evolution [online]. 1999-10. Roč. 49, čís. 4, s. 424–431. Dostupné online. DOI 10.1007/PL00006565. PMID 10486000. (anglicky) 
  • BATTISTUZZI, Fabia U; FEIJAO, Andreia; HEDGES, S Blair. [No title found]. S. 44–58. BMC Evolutionary Biology [online]. 2004. Roč. 4, čís. 1, s. 44–58. Dostupné online. DOI 10.1186/1471-2148-4-44. PMID 15535883. (anglicky) 
  • BECERRA, Arturo; DELAYE, Luis; LAZCANO, Antonio; ORGEL, Leslie E. Protein Disulfide Oxidoreductases and the Evolution of Thermophily: Was the Last Common Ancestor a Heat-Loving Microbe?. S. 296–303. Journal of Molecular Evolution [online]. 2007-10-09. Roč. 65, čís. 3, s. 296–303. Dostupné online. DOI 10.1007/s00239-007-9005-0. PMID 17726569. 
  • ROBERTSON, M. P., Miller, S. L. An efficient prebiotic synthesis of cytosine and uracil. Nature. 1995, roč. 375, čís. 6534, s. 772–774. DOI 10.1038/375772a0. PMID 7596408. 
  • BADA, J. L., Bigham, C., Miller, S. L. Impact Melting of Frozen Oceans on the Early Earth: Implications for the Origin of Life. Proceedings of the National Academy of Sciences. 1994, roč. 91, čís. 4, s. 1248–1250. Dostupné online. DOI 10.1073/pnas.91.4.1248. PMID 11539550. 
  • CLEAVES, H. James; MILLER, Stanley L. Oceanic protection of prebiotic organic compounds from UV radiation. S. 7260–7263. Proceedings of the National Academy of Sciences [online]. 1998-06-23. Roč. 95, čís. 13, s. 7260–7263. Dostupné online. DOI 10.1073/pnas.95.13.7260. PMID 9636136. (anglicky) 
  • DI GIULIO, Massimo. The ocean abysses witnessed the origin of the genetic code. S. 7–12. Gene [online]. 2004. Roč. 346, s. 7–12. Dostupné online. DOI 10.1016/j.gene.2004.07.045. PMID 15716095. (anglicky) 
  • KÖNNYŰ, Balázs; CZÁRÁN, Tamás; SZATHMÁRY, Eörs. Prebiotic replicase evolution in a surface-bound metabolic system: parasites as a source of adaptive evolution. S. 267. BMC Evolutionary Biology [online]. 2008-12. Roč. 8, čís. 1, s. 267. Dostupné online. DOI 10.1186/1471-2148-8-267. (anglicky) 
  • LAZCANO, Antonio; MILLER, Stanley L. The Origin and Early Evolution of Life: Prebiotic Chemistry, the Pre-RNA World, and Time. S. 793–798. Cell [online]. 1996-06. Roč. 85, čís. 6, s. 793–798. Dostupné online. DOI 10.1016/s0092-8674(00)81263-5. PMID 8681375. (anglicky) 
  • CARNY, Ohad; GAZIT, Ehud. A model for the role of short self‐assembled peptides in the very early stages of the origin of life. S. 1051–1055. The FASEB Journal [online]. 2005-07. Roč. 19, čís. 9, s. 1051–1055. Dostupné online. DOI 10.1096/fj.04-3256hyp. PMID 15985527. (anglicky) 
  • BIONDI, Elisa; BRANCIAMORE, Sergio; MAUREL, Marie-Christine; GALLORI, Enzo. Montmorillonite protection of an UV-irradiated hairpin ribozyme: evolution of the RNA world in a mineral environment. BMC Evolutionary Biology [online]. 2007-08. Roč. 7. Dostupné online. DOI 10.1186/1471-2148-7-S2-S2. (anglicky) 
  • PARSONS, Ian; LEE, Martin R.; SMITH, Joseph V. Biochemical evolution II: Origin of life in tubular microstructures on weathered feldspar surfaces. S. 15173–15176. Proceedings of the National Academy of Sciences [online]. 1998-12-22. Roč. 95, čís. 26, s. 15173–15176. Dostupné online. DOI 10.1073/pnas.95.26.15173. PMID 9860941. (anglicky) 
  • DEAMER, David; DWORKIN, Jason P.; SANDFORD, Scott A.; BERNSTEIN, Max P.; ALLAMANDOLA, Louis J. The First Cell Membranes. S. 371–381. Astrobiology [online]. 2002-12. Roč. 2, čís. 4, s. 371–381. Dostupné online. DOI 10.1089/153110702762470482. PMID 12593777. (anglicky) 
  • MULKIDJANIAN, Armen Y. On the origin of life in the Zinc world: 1. Photosynthesizing, porous edifices built of hydrothermally precipitated zinc sulfide as cradles of life on Earth. S. 26. Biology Direct [online]. 2009. Roč. 4, čís. 1, s. 26. Dostupné online. DOI 10.1186/1745-6150-4-26. PMID 19703272. (anglicky) 
  • LEVY, M., Miller, S. L., Brinton, K., Bada, J. L. Prebiotic synthesis of adenine and amino acids under Europa-like conditions. Icarus. 2000, roč. 145, čís. 2, s. 609–613. DOI 10.1006/icar.2000.6365. PMID 11543508. Bibcode 2000Icar..145..609L. 
  • TRINKS, Hauke, Schröder, W., Biebricher, C. Ice And The Origin Of Life. Origins of Life and Evolution of the Biosphere. 2005, roč. 35, čís. 5, s. 429–445. Dostupné v archivu pořízeném dne 2012-01-12. DOI 10.1007/s11084-005-5009-1. PMID 16231207. 

pubmed.ncbi.nlm.nih.gov

novinky.cz

  • Vědci našli dosud nejstarší stopy života na Zemi. Kapitola Věda a školy. Novinky.cz [online]. Borgis, a.s., 30. září 2017 [cit. 2017-10-02]. Dostupné v archivu pořízeném z originálu dne 2017-10-02. 

osel.cz

  • MIHULKA, Stanislav. Odstartoval vznik života na Zemi před miliardami let jaderný gejzír?. osel.cz [online]. 2017-09-13 [cit. 2022-12-26]. Dostupné online. 

phys.org

  • University of California, Los Angeles. Life on Earth likely started 4.1 billion years ago—much earlier than scientists thought. phys.org [online]. 2015-10-19 [cit. 2022-12-24]. Dostupné online. (anglicky) 
  • University College London. Tracking records of the oldest life forms on Earth. phys.org [online]. 2019-04-08 [cit. 2022-12-24]. Dostupné online. (anglicky) 
  • University College London. Diverse life forms may have evolved earlier than previously thought. phys.org [online]. 2022-04-13 [cit. 2022-12-24]. Dostupné online. (anglicky) 
  • Evidence of earliest life on Earth disputed. phys.org [online]. 2018-10-17 [cit. 2022-12-24]. Dostupné online. (anglicky) 
  • EDWARDS, Lin. Earliest evidence of life found: 3.49 billion years ago. phys.org [online]. 2013-01-04 [cit. 2022-12-26]. Dostupné online. (anglicky) 
  • UNIVERSITY, Rice. Planetary collision that formed the moon made life possible on Earth. phys.org [online]. 2019-01-23 [cit. 2022-12-24]. Dostupné online. (anglicky) 
  • Earth may have had all the elements needed for life—contrary to theories that they came from meteorites. phys.org [online]. [cit. 2023-12-07]. Dostupné online. 
  • Tel Aviv University. Lightning's electromagnetic fields may have protective properties. phys.org [online]. 2019-02-08 [cit. 2022-12-26]. Dostupné online. (anglicky) 
  • PACKHAM, Christopher. Researchers produce all RNA nucleobases in simulated primordial Earth conditions. phys.org [online]. 2017-04-21 [cit. 2022-12-26]. Dostupné online. (anglicky) 
  • Ultraviolet light may be ultra important in search for life. phys.org [online]. 2017-08-31 [cit. 2022-12-26]. Dostupné online. (anglicky) 
  • TOWNSEND, Peggy. Did life begin on land rather than in the sea?. phys.org [online]. 2017-07-18 [cit. 2022-12-26]. Dostupné online. (anglicky) 
  • CHU, Jennifer. Earliest life may have arisen in ponds, not oceans. phys.org [online]. 2019-04-12 [cit. 2022-12-26]. Dostupné online. (anglicky) 
  • McMaster University. Evidence suggests life on Earth started after meteorites splashed into warm little ponds. phys.org [online]. 2017-10-02 [cit. 2022-12-26]. Dostupné online. (anglicky) 
  • University of Washington. Life could have emerged from lakes with high phosphorus. phys.org [online]. 2019-12-30 [cit. 2022-12-26]. Dostupné online. (anglicky) 
  • The Scripps Research Institute. Chemists discover plausible recipe for early life on Earth. phys.org [online]. 2018-01-08 [cit. 2022-12-26]. Dostupné online. (anglicky) 

pnas.org

  • BADA, J. L., Bigham, C., Miller, S. L. Impact Melting of Frozen Oceans on the Early Earth: Implications for the Origin of Life. Proceedings of the National Academy of Sciences. 1994, roč. 91, čís. 4, s. 1248–1250. Dostupné online. DOI 10.1073/pnas.91.4.1248. PMID 11539550. 
  • PARSONS, Ian; LEE, Martin R.; SMITH, Joseph V. Biochemical evolution II: Origin of life in tubular microstructures on weathered feldspar surfaces. S. 15173–15176. Proceedings of the National Academy of Sciences [online]. 1998-12-22. Roč. 95, čís. 26, s. 15173–15176. Dostupné online. DOI 10.1073/pnas.95.26.15173. PMID 9860941. (anglicky) 

researchgate.net

  • RUSSELL, Michael. First Life. S. 32. American Scientist [online]. 2006. Roč. 94, čís. 1, s. 32. Dostupné online. DOI 10.1511/2006.1.32. (anglicky) 
  • ROBERT, François; CHAUSSIDON, Marc. A palaeotemperature curve for the Precambrian oceans based on silicon isotopes in cherts. S. 969–972. Nature [online]. 2006-10. Roč. 443, čís. 7114, s. 969–972. Dostupné online. DOI 10.1038/nature05239. (anglicky) 

sciencedirect.com

sciencemag.cz

  • HOUSER, Pavel. Tukový život. sciencemag.cz [online]. 2018-09-03 [cit. 2022-12-26]. Dostupné online. 

springer.com

link.springer.com

  • LAZCANO, Antonio; MILLER, Stanley L. On the Origin of Metabolic Pathways. S. 424–431. Journal of Molecular Evolution [online]. 1999-10. Roč. 49, čís. 4, s. 424–431. Dostupné online. DOI 10.1007/PL00006565. PMID 10486000. (anglicky) 
  • RUSSELL, M. J.; HALL, A. J.; MELLERSH, A. R. On the Dissipation of Thermal and Chemical Energies on the Early Earth. In: IKAN, R. Natural and Laboratory-Simulated Thermal Geochemical Processes. [s.l.]: Springer, 2003. Dostupné online. DOI 10.1007/978-94-017-0111-2_10. S. 325–388. (anglicky)

telegraph.co.uk

  • KNAPTON, Sarah. Oldest fossil ever found on Earth shows organisms thrived 4.2bn years ago – and provides strongest evidence yet for similar life on Mars. The Telegraph [online]. 2017-03-01 [cit. 2022-12-24]. Dostupné online. ISSN 0307-1235. (anglicky) 

usra.edu

hou.usra.edu

  • KRANENDONK, M. V.; DJOKIC, T.; CAMPBELL, K.; WALTER, M.; OTO, T.; NAKAMURA, E. Earliest Life on Earth Preserved in Hotspring Deposits: Evidence from the 3.5 Ga Dresser Formation, Pilbara Craton, Australia, and Implications for the Search for Life on Mars. www.hou.usra.edu [online]. 2016. Dostupné online. (anglicky) 

web.archive.org

  • Vědci našli dosud nejstarší stopy života na Zemi. Kapitola Věda a školy. Novinky.cz [online]. Borgis, a.s., 30. září 2017 [cit. 2017-10-02]. Dostupné v archivu pořízeném z originálu dne 2017-10-02. 
  • ADAMČÍK, Richard. Vznik života [online]. [cit. 2011-03-13]. Dostupné v archivu pořízeném dne 2011-08-23. 
  • JEFFARES, D. C., Poole, A. M. Were bacteria the first forms of life on Earth?. ActionBioscience [online]. Prosinec 2000 [cit. 17.12.2012]. Dostupné v archivu pořízeném dne 2012-11-26. 
  • TRINKS, Hauke, Schröder, W., Biebricher, C. Ice And The Origin Of Life. Origins of Life and Evolution of the Biosphere. 2005, roč. 35, čís. 5, s. 429–445. Dostupné v archivu pořízeném dne 2012-01-12. DOI 10.1007/s11084-005-5009-1. PMID 16231207. 

wiley.com

onlinelibrary.wiley.com

faseb.onlinelibrary.wiley.com

  • CARNY, Ohad; GAZIT, Ehud. A model for the role of short self‐assembled peptides in the very early stages of the origin of life. S. 1051–1055. The FASEB Journal [online]. 2005-07. Roč. 19, čís. 9, s. 1051–1055. Dostupné online. DOI 10.1096/fj.04-3256hyp. PMID 15985527. (anglicky) 

worldcat.org

  • TASHIRO, Takayuki; ISHIDA, Akizumi; HORI, Masako; IGISU, Motoko; KOIKE, Mizuho; MÉJEAN, Pauline; TAKAHATA, Naoto, SANO, Yuji; KOMIYA, Tsuyoshi. Early trace of life from 3.95 Ga sedimentary rocks in Labrador, Canada. S. 516–518. Nature [online]. Macmillan Publishers Limited, 27. září 2017. Svazek 549, čís. 7673, s. 516–518. Dostupné online. ISSN 1476-4687. DOI 10.1038/nature24019. (anglicky) 
  • KNAPTON, Sarah. Oldest fossil ever found on Earth shows organisms thrived 4.2bn years ago – and provides strongest evidence yet for similar life on Mars. The Telegraph [online]. 2017-03-01 [cit. 2022-12-24]. Dostupné online. ISSN 0307-1235. (anglicky)