1
Gilmour, Iain, Sephton, Mark A., Conway, Andrew, et al. An introduction to astrobiology. Cambridge: Cambridge University Press/Open University Press 2004.
2
Plaxco, Kevin W., Gross, Michael. Astrobiology: a brief introduction. 2nd ed. Baltimore, Mass: Johns Hopkins University Press 2011.
3
Grotzinger, John P., Jordan, Thomas H. Understanding earth. 6th ed. New York: W. H. Freeman 2010.
4
Tipler, Paul A., Mosca, Gene P. Physics for scientists and engineers: with modern physics. 6th ed. New York, NY: W.H. Freeman 2008.
5
Reece, Jane B., Campbell, Neil A. Biology. 9th ed. Boston: Pearson Education 2011.
6
Brooker, Robert J. Biology. 2nd ed. New York: McGraw-Hill Higher Education 2010.
7
Mason KA, Losos JB, Singer SR, et al. Biology. Eleventh edition. New York, NY: McGraw-Hill Education 2017.
8
Barton, Nicholas H. Evolution. Cold Spring Harbor, N.Y.: Cold Spring Harbor Laboratory Press 2007.
9
Burrows, Andrew. Chemistry3: introducing inorganic, organic and physical chemistry. Oxford: Oxford University Press 2009.
10
Brown, Theodore L. Chemistry: the central science. 12th ed. Boston [Mass.]: Prentice Hall 2012.
11
Zumdahl, Steven S. Chemical principles. 6th ed. Belmont, Calif: Brooks/Cole 2009.
12
Averill, Bruce, Eldredge, Patricia. Chemistry: principles, patterns, and applications. International ed. San Francisco, Calif: Pearson Benjamin Cummings 2007.
13
Housecroft, Catherine E., Constable, Edwin C. Chemistry: an introduction to organic, inorganic and physical chemistry. 4th ed. Harlow: Prentice Hall 2010.
14
Carroll, Bradley W., Ostlie, Dale A. An introduction to modern astrophysics. 2nd International ed. San Francisco: Pearson Addison-Wesley 2007.
15
Freedman, Roger A., Geller, Robert M., Kaufmann, William J. Universe. 9th ed. New York, NY: W.H. Freeman 2011.
16
Charbonneau D, Brown TM, Latham DW, et al. Detection of Planetary Transits Across a Sun-like Star. The Astrophysical Journal. 2000;529:L45–8. doi: 10.1086/312457
17
Microbial growth at hyperaccelerations up to 403,627 × g. 10 AD;108.
18
Di Giulio M. Biological evidence against the panspermia theory. Journal of Theoretical Biology. 2010;266:569–72. doi: 10.1016/j.jtbi.2010.07.017
19
Gislason SR, Oelkers EH, Eiriksdottir ES, et al. Direct evidence of the feedback between climate and weathering. Earth and Planetary Science Letters. 2009;277:213–22. doi: 10.1016/j.epsl.2008.10.018
20
Kasting J. Habitable Zones around Main Sequence Stars. Icarus. 1993;101:108–28. doi: 10.1006/icar.1993.1010
21
Kallenbach R, Benz W, Lugmair G. Introduction: Timescales for the Formation of Terrestrial Planets. In: Benz W, Kallenbach R, Lugmair GW, eds. From dust to terrestrial planets. Space Sciences Series of ISSI: Springer Science+Business Media, B.V. 2012.
22
Lineweaver CH. The Galactic Habitable Zone and the Age Distribution of Complex Life in the Milky Way. Science. 2004;303:59–62. doi: 10.1126/science.1092322
23
Lissauer J. The Outer Planets and their Moons: Formation of the Outer Planets. The outer planets and their moons: comparative studies of the outer planets prior to the exploration of the Saturn system by Cassini-Huygens : volume resulting from an ISSI workshop, 12-16 January 2004, Bern, Switzerland. Space Sciences Series of ISSI: Springer 2005.
24
Thommes EW, Matsumura S, Rasio FA. Gas Disks to Gas Giants: Simulating the Birth of Planetary Systems. Science. 2008;321:814–7. doi: 10.1126/science.1159723
25
Carl Sagan. A search for life on Earth from the Galileo spacecraft. Nature. 1993;365.
26
Alonso Ricardo. ORIGIN OF LIFE ON EARTH. Scientific American. 2009;301.
27
Canganella F, Wiegel J. Extremophiles: from abyssal to terrestrial ecosystems and possibly beyond. Naturwissenschaften. 2011;98:253–79. doi: 10.1007/s00114-011-0775-2
28
Wickramasinghe NC, Trevors JT. Non-terrestrial origin of life: a transformative research paradigm shift. Theory in Biosciences. 2013;132:133–7. doi: 10.1007/s12064-012-0172-1
29
Bada JL. New insights into prebiotic chemistry from Stanley Miller’s spark discharge experiments. ;42:2186–96.
30
The Evolution of Organelles.
31
Panspermia (wikipedia). https://en.wikipedia.org/wiki/Panspermia
32
Berg, Jeremy M., Tymoczko, John L., Stryer, Lubert. Biochemistry. 7th ed. New York: W. H. Freeman 2011.
33
Nelson, David L., Cox, Michael M., Lehninger, Albert L. Lehninger principles of biochemistry. 6th ed. New York, N.Y.: W.H. Freeman 2013.
34
Rodwell VW, Bender DA. Harper’s illustrated biochemistry. Thirty-first edition. New York: McGraw-Hill Education 2018.
35
Dartnell L. Knowledge : how to rebuild our world from scratch. London: Vintage 2014.
36
Lissauer JJ, De Pater I. Fundamental planetary science: physics, chemistry and habitability. New York: Cambridge University Press 2013.
37
Mattick JS. Opinion: RNA regulation: a new genetics? Nature Reviews Genetics. 2004;5:316–23. doi: 10.1038/nrg1321
38
Lundin R, Lammer H, Ribas I. Planetary Magnetic Fields and Solar Forcing: Implications for Atmospheric Evolution. Space Science Reviews. 2007;129:245–78. doi: 10.1007/s11214-007-9176-4
39
Mattick JS. Opinion: RNA regulation: a new genetics? Nature Reviews Genetics. 2004;5:316–23. doi: 10.1038/nrg1321
40
Brin GD. The Great Silence - the Controversy Concerning Extraterrestrial Intelligent Life,. ;24:283–309.
41
Hart MH. Explanation for the Absence of Extraterrestrials on Earth. ;640:128–35.
42
Lada CJ. Stellar Multiplicity and the Initial Mass Function: Most Stars Are Single. The Astrophysical Journal. 2006;640:L63–6. doi: 10.1086/503158
43
Boss AP. Giant Planet Formation by Gravitational Instability. Science. 1997;276:1836–9. doi: 10.1126/science.276.5320.1836
44
Inaba S, Wetherill GW, Ikoma M. Formation of gas giant planets: core accretion models with fragmentation and planetary envelope. Icarus. 2003;166:46–62. doi: 10.1016/j.icarus.2003.08.001
45
Mao S, Paczynski B. Gravitational microlensing by double stars and planetary systems. The Astrophysical Journal. 1991;374. doi: 10.1086/186066
46
Mayor M, Queloz D. A Jupiter-mass companion to a solar-type star. Nature. 1995;378:355–9. doi: 10.1038/378355a0
47
Swain MR, Deroo P, Griffith CA, et al. A ground-based near-infrared emission spectrum of the exoplanet HD 189733b. Nature. 2010;463:637–9. doi: 10.1038/nature08775
48
Guo J, Zhang F, Zhang X, et al. Habitable zones and UV habitable zones around host stars. Astrophysics and Space Science. 2010;325:25–30. doi: 10.1007/s10509-009-0173-9
49
Wesson PS. Cosmology, extraterrestrial intelligence, and a resolution of the Fermi-Hart par. ;31:161–70.
50
Deguchi S, Shimoshige H, Tsudome M, et al. Microbial growth at hyperaccelerations up to 403,627 x g. Proceedings of the National Academy of Sciences. 2011;108:7997–8002. doi: 10.1073/pnas.1018027108
51
Sullivan, Woodruff Turner, Baross, John A. Planets and life: the emerging science of astrobiology. Cambridge: Cambridge University Press 2007.
52
Kauffman, Stuart A. At home in the universe: the search for laws of complexity. London: Penguin 1996.
53
Kauffman, Stuart A. The origins of order: self-organization and selection in evolution. New York: Oxford University Press 1993.
54
Lane, Nick. Life ascending: the ten great inventions of evolution. London: Profile 2009.
55
Lunine, Jonathan Irving. Astrobiology: a multidisciplinary approach. San Franciso, Calif: Pearson Addison Wesley 2005.
56
Mattick JS. Small regulatory RNAs in mammals. Human Molecular Genetics. 2005;14:R121–32. doi: 10.1093/hmg/ddi101
57
Hüttenhofer A, Schattner P, Polacek N. Non-coding RNAs: hope or hype? Trends in Genetics. 2005;21:289–97. doi: 10.1016/j.tig.2005.03.007
58
Walker JCG, Hays PB, Kasting JF. A negative feedback mechanism for the long-term stabilization of Earth’s surface temperature. Journal of Geophysical Research. 1981;86. doi: 10.1029/JC086iC10p09776
59
Willenbring JK, von Blanckenburg F. Long-term stability of global erosion rates and weathering during late-Cenozoic cooling. Nature. 2010;465:211–4. doi: 10.1038/nature09044