Darwin Correspondence Project (2020b) Letter no. 2143. https://www.darwinproject.ac.uk/letter/
DCP-LETT-2143.xml. Accessed on 31 Mar 2020
Darwin Correspondence Project, (2020c) Letter no. 10207. https://www.darwinproject.ac.uk/letter/
DCP-LETT-10207.xml. Accessed on 30 Mar 2020
Darwin Correspondence Project, (2020d) Letter no. 10354. https://www.darwinproject.ac.uk/letter/
DCP-LETT-10354.xml. Accessed on 23 Mar 2020
Dayhoff MO (1969) Computer analysis of protein evolution. Sci Am 221:86–95
Dickerson RE (1980) Evolution and gene transfer in purple photosynthetic bacteria. Nature
283:210–212
Dobzhansky T (1973) Nothing in biology makes sense except in the light of evolution. Am Biol
Teach 35:125–129
Doolittle WF (2020) Curr Biol 30(4):R177–R179. https://doi.org/10.1016/j.cub.2020.01.010
Doolittle WF, Brunet TD (2016) What is the tree of life? PLoS Genet 12(4):e1005912. https://doi.
org/10.1371/journal.pgen.1005912. eCollection 2016 Apr. Review
Drews G (1999) Ferdinand Cohn, a founder of modern microbiology. ASM News 65:1–9
Drews G (2000) The roots of microbiology and the influence of Ferdinand Cohn on microbiology of
the 19th century. FEMS Microbiol Rev 24:225–249
Dworkin M (2012) Sergei Winogradsky: a founder of modern microbiology and the first microbial
ecologist. FEMS Microbiol Rev 36:364–379
Fitch WM, Margoliash E (1967) Construction of phylogenetic trees. Science 155:279–284
Fournier GP, Huang J, Gogarten JP (2009) Horizontal gene transfer from extinct and extant
lineages: biological innovation and the coral of life. Philos Trans R Soc Lond Ser B Biol Sci
364:2229–2239
Fournier GP, Poole AM (2018) A briefly argued case that Asgard Archaea are part of the eukaryote
tree. Front Microbiol 9:1896. https://doi.org/10.3389/fmicb.2018.01896
Fox GE, Pechman KR, Woese CR (1977) Comparative cataloging of 16S ribosomal ribonucleic
acid: molecular approach to prokaryotic systematics. Int J System Bacteriol 27:44–57
Fox GE, Stackebrandt E, Hespell RB, Gibson J, Maniloff J, Dyer TA, Wolfe RS, Balch WE, Tanner
RS, Magrum LJ, Zablen LB, Blakemore R, Gupta R, Bonen L, Lewis BJ, Stahl DA, Luehrsen
KR, Chen KN, Woese CR (1980) The phylogeny of prokaryotes. Science 209:457–463
Gogarten JP, Kibak H, Dittrich P, Taiz L, Bowman EJ, Manolson MF, Poole RJ, Date T, Oshima T,
Konishi J, Denda K, Yoshida M (1989) Evolution of the vacuolar H+-ATPase: implications for
the origin of eukaryotes. Proc Natl Acad Sci U S A 86:6661–6665
Good BH, McDonald MJ, Barrick JE, Lenski RE, Desai MM (2017) The dynamics of molecular
evolution over 60,000 generations. Nature 551:45–50
Haas JW Jr (2000) The reverend Dr William Henry Dallinger, FRS (1839-1909). Note Rec R Soc
Lond 54:53–65
Hegeman GD, Rosenberg L (1970) The evolution of bacterial enzyme systems. Annu Rev
Microbiol 24:429–462
Hein GE (1961) The Liebig-Pasteur controversy. Vitality without vitalism. J Chem Educ
38:614–619
Hori H (1976) Molecular evolution of 5S RNA. Mol Gen Genet 145:119–123
Horowitz NH (1945) On the evolution of biochemical syntheses. Proc Natl Acad Sci 31:153–157
Hunt LT, George DG, Yeh LS, Dayhoff MO (1984) Evolution of prokaryote and eukaryote lines
inferred from sequence evidence. Orig Life 14:657–664
Imachi H, Nobu MK, Nakahara N, Morono Y, Ogawara M, Takaki Y, Takano Y, Uematsu K,
Ikuta T, Ito M, Matsui Y, Miyazaki M, Murata K, Saito Y, Sakai S, Song C, Tasumi E,
Yamanaka Y, Yamaguchi T, Kamagata Y, Tamaki H, Takai K (2020) Isolation of an archaeon
at the prokaryote-eukaryote interface. Nature 577:519–525
Iwabe N, Kuma K, Hasegawa M, Osawa S, Miyata T (1989) Evolutionary relationship of
archaebacteria, eubacteria, and eukaryotes inferred from phylogenetic trees of duplicated
genes. Proc Natl Acad Sci U S A 86:9355–9359
2 Darwin’s Science’s Impact on the Evolution of the Microbiological Sciences
53
DCP-LETT-2143.xml. Accessed on 31 Mar 2020
Darwin Correspondence Project, (2020c) Letter no. 10207. https://www.darwinproject.ac.uk/letter/
DCP-LETT-10207.xml. Accessed on 30 Mar 2020
Darwin Correspondence Project, (2020d) Letter no. 10354. https://www.darwinproject.ac.uk/letter/
DCP-LETT-10354.xml. Accessed on 23 Mar 2020
Dayhoff MO (1969) Computer analysis of protein evolution. Sci Am 221:86–95
Dickerson RE (1980) Evolution and gene transfer in purple photosynthetic bacteria. Nature
283:210–212
Dobzhansky T (1973) Nothing in biology makes sense except in the light of evolution. Am Biol
Teach 35:125–129
Doolittle WF (2020) Curr Biol 30(4):R177–R179. https://doi.org/10.1016/j.cub.2020.01.010
Doolittle WF, Brunet TD (2016) What is the tree of life? PLoS Genet 12(4):e1005912. https://doi.
org/10.1371/journal.pgen.1005912. eCollection 2016 Apr. Review
Drews G (1999) Ferdinand Cohn, a founder of modern microbiology. ASM News 65:1–9
Drews G (2000) The roots of microbiology and the influence of Ferdinand Cohn on microbiology of
the 19th century. FEMS Microbiol Rev 24:225–249
Dworkin M (2012) Sergei Winogradsky: a founder of modern microbiology and the first microbial
ecologist. FEMS Microbiol Rev 36:364–379
Fitch WM, Margoliash E (1967) Construction of phylogenetic trees. Science 155:279–284
Fournier GP, Huang J, Gogarten JP (2009) Horizontal gene transfer from extinct and extant
lineages: biological innovation and the coral of life. Philos Trans R Soc Lond Ser B Biol Sci
364:2229–2239
Fournier GP, Poole AM (2018) A briefly argued case that Asgard Archaea are part of the eukaryote
tree. Front Microbiol 9:1896. https://doi.org/10.3389/fmicb.2018.01896
Fox GE, Pechman KR, Woese CR (1977) Comparative cataloging of 16S ribosomal ribonucleic
acid: molecular approach to prokaryotic systematics. Int J System Bacteriol 27:44–57
Fox GE, Stackebrandt E, Hespell RB, Gibson J, Maniloff J, Dyer TA, Wolfe RS, Balch WE, Tanner
RS, Magrum LJ, Zablen LB, Blakemore R, Gupta R, Bonen L, Lewis BJ, Stahl DA, Luehrsen
KR, Chen KN, Woese CR (1980) The phylogeny of prokaryotes. Science 209:457–463
Gogarten JP, Kibak H, Dittrich P, Taiz L, Bowman EJ, Manolson MF, Poole RJ, Date T, Oshima T,
Konishi J, Denda K, Yoshida M (1989) Evolution of the vacuolar H+-ATPase: implications for
the origin of eukaryotes. Proc Natl Acad Sci U S A 86:6661–6665
Good BH, McDonald MJ, Barrick JE, Lenski RE, Desai MM (2017) The dynamics of molecular
evolution over 60,000 generations. Nature 551:45–50
Haas JW Jr (2000) The reverend Dr William Henry Dallinger, FRS (1839-1909). Note Rec R Soc
Lond 54:53–65
Hegeman GD, Rosenberg L (1970) The evolution of bacterial enzyme systems. Annu Rev
Microbiol 24:429–462
Hein GE (1961) The Liebig-Pasteur controversy. Vitality without vitalism. J Chem Educ
38:614–619
Hori H (1976) Molecular evolution of 5S RNA. Mol Gen Genet 145:119–123
Horowitz NH (1945) On the evolution of biochemical syntheses. Proc Natl Acad Sci 31:153–157
Hunt LT, George DG, Yeh LS, Dayhoff MO (1984) Evolution of prokaryote and eukaryote lines
inferred from sequence evidence. Orig Life 14:657–664
Imachi H, Nobu MK, Nakahara N, Morono Y, Ogawara M, Takaki Y, Takano Y, Uematsu K,
Ikuta T, Ito M, Matsui Y, Miyazaki M, Murata K, Saito Y, Sakai S, Song C, Tasumi E,
Yamanaka Y, Yamaguchi T, Kamagata Y, Tamaki H, Takai K (2020) Isolation of an archaeon
at the prokaryote-eukaryote interface. Nature 577:519–525
Iwabe N, Kuma K, Hasegawa M, Osawa S, Miyata T (1989) Evolutionary relationship of
archaebacteria, eubacteria, and eukaryotes inferred from phylogenetic trees of duplicated
genes. Proc Natl Acad Sci U S A 86:9355–9359
2 Darwin’s Science’s Impact on the Evolution of the Microbiological Sciences
53
