O’Malley MA (2007) The nineteenth century roots of ‘everything is everywhere. Nature Rev
5:647–651
O’Malley MA (2009) What did Darwin say about microbes, and how did microbiology respond?
Trends Microbiol 17:341–347
Olsen E (1950) Obituary notice: S. Orla-Jensen. J Gen Microbiol 1:106–109
Orla-Jensen S (1921) The main lines of the natural bacterial system. J Bacteriol 6:263–273
Padian K (1999) Charles Darwin’s views of classification in theory and practice. Syst Biol
48:352–354
Rabbers I, van Heerden JH, Nordholt N, Bachmann H, Teusink B, Bruggeman FJ (2015) Metabolism in evolutionary optimal states. Meta 5:311–343
Rainey PB, Mozon ER, Thompson IP (1993) Intraclonal polymorphism in bacteria. Adv Microb
Ecol 13:263–300
Rainey PB, Remigi P, Farr AD, Lind PA (2017) Darwin was right: where now for experimental
evolution? Curr Opin Genet Dev 47:102–109
Rainey PB, Travisano M (1998) Adaptive radiation in a heterogenous environment. Nature
394:69–72
Reanney DC (1974) On the origin of prokaryotes. J Theor Biol 48:243–251
Report of the Microscopical Society of Liverpool (1869) Mon Microscp Jl 223:2
Richardson RA (1981) Biogeography and the genesis of Darwin’s ideas on transmutation. J Hist
Biol 14:1–41
Ristaino JB, Pfister DH (2016) “What a painfully interesting subject”: Charles Darwin’s studies of
potato late blight. Bio Sci 66:1035–1045
Sanger F, Brownlee GG, Barrell BG (1965) A two-dimensional fractionation procedure for
radioactive nucleotides. J Mol Biol 13:37–398
Sapp J (1979) The new foundations of evolution: on the tree of life. Oxford University Press,
New York, NY, p 158
Sapp J (2005) The prokaryote-eukaryote dichotomy: meanings and mythology. Microbiol Mol Biol
Rev 69:292–305
Schleiden MJ (1838) Beiträge zur Phytogenesis (contributions to our knowledge of phytogenesis).
Archiv für Anatomie, Physiologie und wissenschaftliche Medicin:137–176
Schwartz RM, Dayhoff MO (1978) Origins of prokaryotes, eukaryotes, mitochondria and chloroplasts. Science, New Series 199:395–403
Schwartz RM, Dayhoff MO (1981) Chloroplast origins: inferences from protein and nucleic acid
sequences. Ann N Y Acad Sci 361:260–272
Service PM, Lenski RE (1982) Aphid genotypes, plant phenotypes, and genetic diversity: a
demographic analysis of experimental data. Evolution 36:1276–1282
Singleton R Jr, Singleton DR (2017) Remembering our forebears: Albert Jan Kluyver and the Unity
of life. J Hist Biol 50:169–218
Sogin S, Sogin ML, Woese CR (1972) Phylogenetic measurement in procaryotes by primary
structural characterization. J Mol Evol 1:173–184
Spang A, Saw JH, Jørgensen SL, Zaremba-Niedzwiedzka K, Marijn J, Lind AE, van Eijk R,
Schleper C, Guy L, Ettema TJG (2015) Complex archaea that bridge the gap between prokaryotes and eukaryotes. Nature 521:173–179
Stanier RY (1951) The life-work of a founder of bacteriology. Q Rev Biol 26:35–37
Stanier RY (1980) The journey, not the arrival, matters. Ann Rev Microbiol 34:1–48
Stanier RY, van Niel CB (1941) The main outlines of bacterial classification. J Bacteriol
42:437–466
Stanier RY, van Niel CB (1962) The concept of a bacterium. Arch Mikrobiol 42:17–35
Theunissen B (1996) The beginnings of the “Delft tradition” revisited: Martinus W. Beijerinck and
the genetics of microorganisms. J Hist Biol 29:197–228
Van Niel CB (1946) The classification and natural relationships of bacteria. Cold Spr Harbor Sym
Quant Biol 11:285–301
Van Niel CB (1957) Obituary notice, Albert Jan Kluyver, 1888-1956. J Gen Microbiol 16:499–521
2 Darwin’s Science’s Impact on the Evolution of the Microbiological Sciences
55
5:647–651
O’Malley MA (2009) What did Darwin say about microbes, and how did microbiology respond?
Trends Microbiol 17:341–347
Olsen E (1950) Obituary notice: S. Orla-Jensen. J Gen Microbiol 1:106–109
Orla-Jensen S (1921) The main lines of the natural bacterial system. J Bacteriol 6:263–273
Padian K (1999) Charles Darwin’s views of classification in theory and practice. Syst Biol
48:352–354
Rabbers I, van Heerden JH, Nordholt N, Bachmann H, Teusink B, Bruggeman FJ (2015) Metabolism in evolutionary optimal states. Meta 5:311–343
Rainey PB, Mozon ER, Thompson IP (1993) Intraclonal polymorphism in bacteria. Adv Microb
Ecol 13:263–300
Rainey PB, Remigi P, Farr AD, Lind PA (2017) Darwin was right: where now for experimental
evolution? Curr Opin Genet Dev 47:102–109
Rainey PB, Travisano M (1998) Adaptive radiation in a heterogenous environment. Nature
394:69–72
Reanney DC (1974) On the origin of prokaryotes. J Theor Biol 48:243–251
Report of the Microscopical Society of Liverpool (1869) Mon Microscp Jl 223:2
Richardson RA (1981) Biogeography and the genesis of Darwin’s ideas on transmutation. J Hist
Biol 14:1–41
Ristaino JB, Pfister DH (2016) “What a painfully interesting subject”: Charles Darwin’s studies of
potato late blight. Bio Sci 66:1035–1045
Sanger F, Brownlee GG, Barrell BG (1965) A two-dimensional fractionation procedure for
radioactive nucleotides. J Mol Biol 13:37–398
Sapp J (1979) The new foundations of evolution: on the tree of life. Oxford University Press,
New York, NY, p 158
Sapp J (2005) The prokaryote-eukaryote dichotomy: meanings and mythology. Microbiol Mol Biol
Rev 69:292–305
Schleiden MJ (1838) Beiträge zur Phytogenesis (contributions to our knowledge of phytogenesis).
Archiv für Anatomie, Physiologie und wissenschaftliche Medicin:137–176
Schwartz RM, Dayhoff MO (1978) Origins of prokaryotes, eukaryotes, mitochondria and chloroplasts. Science, New Series 199:395–403
Schwartz RM, Dayhoff MO (1981) Chloroplast origins: inferences from protein and nucleic acid
sequences. Ann N Y Acad Sci 361:260–272
Service PM, Lenski RE (1982) Aphid genotypes, plant phenotypes, and genetic diversity: a
demographic analysis of experimental data. Evolution 36:1276–1282
Singleton R Jr, Singleton DR (2017) Remembering our forebears: Albert Jan Kluyver and the Unity
of life. J Hist Biol 50:169–218
Sogin S, Sogin ML, Woese CR (1972) Phylogenetic measurement in procaryotes by primary
structural characterization. J Mol Evol 1:173–184
Spang A, Saw JH, Jørgensen SL, Zaremba-Niedzwiedzka K, Marijn J, Lind AE, van Eijk R,
Schleper C, Guy L, Ettema TJG (2015) Complex archaea that bridge the gap between prokaryotes and eukaryotes. Nature 521:173–179
Stanier RY (1951) The life-work of a founder of bacteriology. Q Rev Biol 26:35–37
Stanier RY (1980) The journey, not the arrival, matters. Ann Rev Microbiol 34:1–48
Stanier RY, van Niel CB (1941) The main outlines of bacterial classification. J Bacteriol
42:437–466
Stanier RY, van Niel CB (1962) The concept of a bacterium. Arch Mikrobiol 42:17–35
Theunissen B (1996) The beginnings of the “Delft tradition” revisited: Martinus W. Beijerinck and
the genetics of microorganisms. J Hist Biol 29:197–228
Van Niel CB (1946) The classification and natural relationships of bacteria. Cold Spr Harbor Sym
Quant Biol 11:285–301
Van Niel CB (1957) Obituary notice, Albert Jan Kluyver, 1888-1956. J Gen Microbiol 16:499–521
2 Darwin’s Science’s Impact on the Evolution of the Microbiological Sciences
55
