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Post-genomics, Evo-Devo and the recurrence of teleologic thought


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Layer PG. Postgenomik, Evo-Devo und die Wiederkehr teleologischer Ideen. Naturwiss Rundsch. 2021;74(5):228–37. LayerPG Postgenomik, Evo-Devo und die Wiederkehr teleologischer Ideen Naturwiss Rundsch 2021 74 5 228 37 Search in Google Scholar

Gerhart J, Kirschner M. The theory of facilitated variation. Proc Natl Acad Sci U S A.2007;104(Suppl 1):8582–9. GerhartJ KirschnerM The theory of facilitated variation Proc Natl Acad Sci U S A 2007 104 Suppl 1 8582 9 Search in Google Scholar

Laland K, Uller T, Feldman M, Al. E. Does evolutionary theory need a rethink? Nature. 2014;514:161–4. LalandK UllerT FeldmanM AlE Does evolutionary theory need a rethink? Nature 2014 514 161 4 Search in Google Scholar

Pigliucci M, Müller G. Evolution - The Extended Synthesis. MIT Press, Cambridge; 2010. PigliucciM MüllerG Evolution - The Extended Synthesis MIT Press Cambridge 2010 Search in Google Scholar

Gould SJ, Lewontin RC. The spandrels of San Marco and. Proc R Soc Lond B. 1979;205:581–98. GouldSJ LewontinRC The spandrels of San Marco and Proc R Soc Lond B 1979 205 581 98 Search in Google Scholar

Thomson KS. The meanings of evolution. Am Sci. 1982;70(5): 529–31. ThomsonKS The meanings of evolution Am Sci 1982 70 5 529 31 Search in Google Scholar

Gutmann WF, Weingarten M. Grundlagen von Konstruktionsmorphologie und organismischer Evolutionstheorie. In: Aufsätze u Reden Senck naturf Ges. Frankfurt a.M.: Verlag Waldemar Kramer; 1992. p. 51–68. GutmannWF WeingartenM Grundlagen von Konstruktionsmorphologie und organismischer Evolutionstheorie In: Aufsätze u Reden Senck naturf Ges Frankfurt a.M. Verlag Waldemar Kramer 1992 51 68 Search in Google Scholar

Waddington CH. Canalization of Development and the Inheritance of Acquired Characters. Nature. 1942;150:563–5. WaddingtonCH Canalization of Development and the Inheritance of Acquired Characters Nature 1942 150 563 5 Search in Google Scholar

West-Eberhard MJ. Phenotypic plasticity and the origins of diversity. Annu Rev Ecol Syst Vol 20. 1989;20(1):249–78. West-EberhardMJ Phenotypic plasticity and the origins of diversity Annu Rev Ecol Syst Vol 20 1989 20 1 249 78 Search in Google Scholar

Gilbert SF, Barresi MJF. Developmental Biology, 12th Edition. Sinauer; 2020. GilbertSF BarresiMJF Developmental Biology 12th Edition Sinauer 2020 Search in Google Scholar

Morgan HD, Sutherland HGE, Martin DIK, Whitelaw E. Epigenetic inheritance at the agouti locus in the mouse. Nat Genet. 1999 Nov;23(3):314–8. MorganHD SutherlandHGE MartinDIK WhitelawE Epigenetic inheritance at the agouti locus in the mouse Nat Genet 1999 Nov 23 3 314 8 Search in Google Scholar

van Steenwyk G, Roszkowski M, Manuella F, Franklin TB, Mansuy IM. Transgenerational inheritance of behavioral and metabolic effects of paternal exposure to traumatic stress in early postnatal life: evidence in the 4th generation. Environ Epigenetics. 2018 Apr 1;4(2):1–8. van SteenwykG RoszkowskiM ManuellaF FranklinTB MansuyIM Transgenerational inheritance of behavioral and metabolic effects of paternal exposure to traumatic stress in early postnatal life: evidence in the 4th generation Environ Epigenetics 2018 Apr 1 4 2 1 8 Search in Google Scholar

Skinner M, Mannikam M, Guerrero-Bosagna C. Epigenetic transgenerational actions of environmental factors in disease etiology. Trends Endochrinol Metab. 2010;21:214–22. SkinnerM MannikamM Guerrero-BosagnaC Epigenetic transgenerational actions of environmental factors in disease etiology Trends Endochrinol Metab 2010 21 214 22 Search in Google Scholar

Gapp K, Jawaid A, Sarkies P, Bohacek J, Pelczar P, Prados J, et al. Implication of sperm RNAs in transgenerational inheritance of the effects of early trauma in mice. Nat Neurosci. 2014;17(5):667–9. GappK JawaidA SarkiesP BohacekJ PelczarP PradosJ Implication of sperm RNAs in transgenerational inheritance of the effects of early trauma in mice Nat Neurosci 2014 17 5 667 9 Search in Google Scholar

Mayr E. Die Entwicklung der biologischen Gedankenwelt: Vielfalt, Evolution und Vererbung. Springer; 2005. MayrE Die Entwicklung der biologischen Gedankenwelt: Vielfalt, Evolution und Vererbung Springer 2005 Search in Google Scholar

Mayr E. The objects of selection. Proc Natl Acad Sci USA. 1997;94(6):2091–4. pnas.org/doi/full/10.1073/pnas.94.6.2091 MayrE The objects of selection Proc Natl Acad Sci USA 1997 94 6 2091 4 pnas.org/doi/full/10.1073/pnas.94.6.2091 Search in Google Scholar

Amundson R. The changing role of the embryo in evolutionary thought: roots of evo-devo. Cambridge University Press; 2005. AmundsonR The changing role of the embryo in evolutionary thought: roots of evo-devo Cambridge University Press 2005 Search in Google Scholar

Lewontin RC. Population Genetics. Annu Rev Genet. 1973 Dec;7(1):1–17. LewontinRC Population Genetics Annu Rev Genet 1973 Dec 7 1 1 17 Search in Google Scholar

Endler J. Natural Selection in the Wild. Princeton University Press; 1986. EndlerJ Natural Selection in the Wild Princeton University Press 1986 Search in Google Scholar

Monod J. Zufall und Notwendigkeit. Philosophische Fragen der modernen Biologie. Piper Verlag; 1971. MonodJ Zufall und Notwendigkeit. Philosophische Fragen der modernen Biologie Piper Verlag 1971 Search in Google Scholar

Beadle GW, Tatum EL. Genetic Control of Biochemical Reactions in Neurospora. Proc Natl Acad Sci. 1941;27(11):499–506. BeadleGW TatumEL Genetic Control of Biochemical Reactions in Neurospora Proc Natl Acad Sci 1941 27 11 499 506 Search in Google Scholar

Eisenberg D, Marcotte EM, Xenarios I, Yeates TO. Protein function the post-genomic era. Nature. 2000;405(6788):823–6.. EisenbergD MarcotteEM XenariosI YeatesTO Protein function the post-genomic era Nature 2000 405 6788 823 6 Search in Google Scholar

Nicholson DJ, Dupré J. Everything Flows. Towards a Processual Philosophy of Biology. Nicholson DJ, Dupré J, editors. Oxford University Press; 2018. NicholsonDJ DupréJ Everything Flows. Towards a Processual Philosophy of Biology NicholsonDJ DupréJ editors. Oxford University Press 2018 Search in Google Scholar

Gilbert SF, Epel D. Ecological Developmental Biology: Integrating Epigenetics, Medicine, and Evolution: An Integrated Approach to Embryology, Evolution, and Medicine. Sinauer Assoc.; 2009. GilbertSF EpelD Ecological Developmental Biology: Integrating Epigenetics, Medicine, and Evolution: An Integrated Approach to Embryology, Evolution, and Medicine Sinauer Assoc. 2009 Search in Google Scholar

Waddington CH. Canalization of Development and the Inheritance of Acquired Characters. Nature. 1942;150:563–5. WaddingtonCH Canalization of Development and the Inheritance of Acquired Characters Nature 1942 150 563 5 Search in Google Scholar

Goldschmidt R. Intersexuality and Development. Am Nat. 1938;72(740):228–242. GoldschmidtR Intersexuality and Development Am Nat 1938 72 740 228 242 Search in Google Scholar

Turner JS. Purpose and desire. What makes something “alive” and why modern Darwinism has failed to explain it. HarperCollins Publishers; 2017. TurnerJS Purpose and desire. What makes something “alive” and why modern Darwinism has failed to explain it HarperCollins Publishers 2017 Search in Google Scholar

Minelli A. Forms of Becoming. The Evolutionary Biology of Development. Princeton University Press; 2009. MinelliA Forms of Becoming. The Evolutionary Biology of Development Princeton University Press 2009 Search in Google Scholar

Gould SJ, Eldredge N. Punctuated Equilibrium at the Third Stage. Syst Zool. 1986;35(1):143. GouldSJ EldredgeN Punctuated Equilibrium at the Third Stage Syst Zool 1986 35 1 143 Search in Google Scholar

Kleinschmidt O. Eine Monographie des Wanderfalken und zugleich eine Studie über das Wesen der Rasse in freier Natur. Berajah, Zoographia Infinita Halle. 1927;126. KleinschmidtO Eine Monographie des Wanderfalken und zugleich eine Studie über das Wesen der Rasse in freier Natur Berajah, Zoographia Infinita Halle 1927 126 Search in Google Scholar

Beleites M. Umweltresonanz. Telesma-Verlag, Treuenbrietzen, Germany; 2014. BeleitesM Umweltresonanz Telesma-Verlag, Treuenbrietzen Germany 2014 Search in Google Scholar

Layer P, Lüttge U. Faden oder Kugel und die Landnahme von Flora und Fauna. Naturwiss Rundsch. 2020;73(12):572–85. LayerP LüttgeU Faden oder Kugel und die Landnahme von Flora und Fauna Naturwiss Rundsch 2020 73 12 572 85 Search in Google Scholar

Fields C, Levin M. Does Evolution Have a Target Morphology? Organisms. 2020;4(1):57–76. FieldsC LevinM Does Evolution Have a Target Morphology? Organisms 2020 4 1 57 76 Search in Google Scholar

Conway-Morris S. Darwin’s dilemma: The realities of the Cambrian “explosion.” Phil Trans Royal Soc B: Biological Sciences. 2006;361(1470):1069–1083. Conway-MorrisS Darwin’s dilemma: The realities of the Cambrian “explosion.” Phil Trans Royal Soc B: Biological Sciences 2006 361 1470 1069 1083 Search in Google Scholar

Lange A, Nemeschkal HL, Müller GB. A threshold model for polydactyly. Prog Biophys Mol Biol. 2018;137:1–11. LangeA NemeschkalHL MüllerGB A threshold model for polydactyly Prog Biophys Mol Biol 2018 137 1 11 Search in Google Scholar

Laland KN, Uller T, Feldman MW, Sterelny K, Müller GB, Moczek A, et al. The extended evolutionary synthesis: its structure, assumptions and predictions. Proc Biol Sci. 2015;282(1813): 20151019. LalandKN UllerT FeldmanMW SterelnyK MüllerGB MoczekA The extended evolutionary synthesis: its structure, assumptions and predictions Proc Biol Sci 2015 282 1813 20151019 Search in Google Scholar

Tribes E, Lewontin R. Altenberg 16: An Exposé Of The Evolution Industry. Evolution (NY). 2008; TribesE LewontinR Altenberg 16: An Exposé Of The Evolution Industry Evolution (NY) 2008 Search in Google Scholar

Austin CJ. The Philosophy of Biology. Vol. 77, Analysis (United Kingdom). 2017. AustinCJ The Philosophy of Biology 77 Analysis (United Kingdom) 2017 Search in Google Scholar

Rashid DJ, Chapman SC, Larsson HC, Organ CL, Bebin A-G, Merzdorf CS, et al. From dinosaurs to birds: a tail of evolution. Evodevo. 2014;5(1):25. RashidDJ ChapmanSC LarssonHC OrganCL BebinA-G MerzdorfCS From dinosaurs to birds: a tail of evolution Evodevo 2014 5 1 25 Search in Google Scholar

Linz DM, Moczek AP. Integrating evolutionarily novel horns within the deeply conserved insect head. BMC Biol. 2020;18(1):41. LinzDM MoczekAP Integrating evolutionarily novel horns within the deeply conserved insect head BMC Biol 2020 18 1 41 Search in Google Scholar

Abzhanov A, Protas M, Grant BR, Grant PR, Tabin CJ. Bmp4 and Morphological Variation of Beaks in Darwin’s Finches. Science. 2004;305(5689):1462–5. AbzhanovA ProtasM GrantBR GrantPR TabinCJ Bmp4 and Morphological Variation of Beaks in Darwin’s Finches Science 2004 305 5689 1462 5 Search in Google Scholar

Turing AM. The Chemical Basis of Morphogenesis. Philos Trans R Soc L. 1952;237(641):37–72. TuringAM The Chemical Basis of Morphogenesis Philos Trans R Soc L 1952 237 641 37 72 Search in Google Scholar

Gierer A, Meinhardt H. A theory of biological pattern formation. Kybernetik. 1972;12(1):30–9. GiererA MeinhardtH A theory of biological pattern formation Kybernetik 1972 12 1 30 9 Search in Google Scholar

Meinhardt H, Gierer A. Pattern formation by local self-activation and lateral inhibition. BioEssays. 2000;22:753–60. MeinhardtH GiererA Pattern formation by local self-activation and lateral inhibition BioEssays 2000 22 753 60 Search in Google Scholar

Lange A, Nemeschkal HL, Müller GB. Biased polyphenism in polydactylous cats carrying a single point mutation: the Hemingway model for digit novelty. Evol Biol. 2014;41:262–75. LangeA NemeschkalHL MüllerGB Biased polyphenism in polydactylous cats carrying a single point mutation: the Hemingway model for digit novelty Evol Biol 2014 41 262 75 Search in Google Scholar

Fankhauser G. Maintenance of normal structure in heteroploid salamander larvae, through compensation of changes in cell size by adjustment of cell number and cell shape. J Exp Zool. 1945;100(3):445–455. FankhauserG Maintenance of normal structure in heteroploid salamander larvae, through compensation of changes in cell size by adjustment of cell number and cell shape J Exp Zool 1945 100 3 445 455 Search in Google Scholar

Kirschner M, Gerhart J, Mitchison T. Molecular “vitalism”. Cell. 2000;100(1):79–88. KirschnerM GerhartJ MitchisonT Molecular “vitalism” Cell 2000 100 1 79 88 Search in Google Scholar

Layer PG, Robitzki A, Rothermel A, Willbold E. Of layers and spheres: The reaggregate approach in tissue engineering. Trends Neurosci. 2002;25(3):131–4.. LayerPG RobitzkiA RothermelA WillboldE Of layers and spheres: The reaggregate approach in tissue engineering Trends Neurosci 2002 25 3 131 4 Search in Google Scholar

Koo B, Choi B, Park H, Yoon KJ. Past, Present, and Future of Brain Organoid Technology. Mol Cells. 2019;42(9):617–27. KooB ChoiB ParkH YoonKJ Past, Present, and Future of Brain Organoid Technology Mol Cells 2019 42 9 617 27 Search in Google Scholar

Kim J, Koo BK, Knoblich JA. Human organoids: model systems for human biology and medicine. Nature Reviews Molecular Cell Biology. 2020;21(10):571–584. KimJ KooBK KnoblichJA Human organoids: model systems for human biology and medicine Nature Reviews Molecular Cell Biology 2020 21 10 571 584 Search in Google Scholar

Layer PG, Willbold E. Regeneration of the avian retina by retinospheroid technology. Prog Retin Eye Res. 1994;13(1):197–230. LayerPG WillboldE Regeneration of the avian retina by retinospheroid technology Prog Retin Eye Res 1994 13 1 197 230 Search in Google Scholar

Vollmer G, Layer PG, Gierer A. Reaggregation of embryonic chick retina cells: Pigment epithelial cells induce a high order of stratification. Neurosci Lett. 1984;48(2):191–6. VollmerG LayerPG GiererA Reaggregation of embryonic chick retina cells: Pigment epithelial cells induce a high order of stratification Neurosci Lett 1984 48 2 191 6 Search in Google Scholar

Layer PG. Brains emerging: On modularity and self-organisation of neural development in vivo and in vitro. In: Wegner LH, Lüttge U, editors. Emergence and Modularity in Life Sciences. Springer, 2019. p.145–170. LayerPG Brains emerging: On modularity and self-organisation of neural development in vivo and in vitro In: WegnerLH LüttgeU editors. Emergence and Modularity in Life Sciences Springer 2019 145 170 Search in Google Scholar

Austin CJ, Nuno de la Rosa L. No Title. In: Nuno de la Rosa L, Müller G, editors. Dispositional Properties in Evo-Devo in: Evolutionary Developmental Biology: A Reference Guide. Springer; 2018. AustinCJ Nuno de la RosaL No Title. In: Nuno de la RosaL MüllerG editors. Dispositional Properties in Evo-Devo in: Evolutionary Developmental Biology: A Reference Guide Springer 2018 Search in Google Scholar

Dupré J, Nicholson DJ. A Manifesto for a Processual Philosophy of Biology. In: Everything flows. Oxford University Press; 2018. p. 3–45. DupréJ NicholsonDJ A Manifesto for a Processual Philosophy of Biology In: Everything flows Oxford University Press 2018 3 45 Search in Google Scholar

Schmidt JC. Das Andere der Natur. Hirzel-Verlag; 2015. SchmidtJC Das Andere der Natur Hirzel-Verlag 2015 Search in Google Scholar

Wegner LH, Lüttge U. Emergence and Modularity in Life Sciences. Springer-Verlag; 2019. WegnerLH LüttgeU Emergence and Modularity in Life Sciences Springer-Verlag 2019 Search in Google Scholar

Hao Z, Liu J, Wu B, Yu M, Wegner LH. Strong Emergence in Biological Systems: Is It Open to Mathematical Reasoning? Acta Biotheor. 2021;69(4):841–56. HaoZ LiuJ WuB YuM WegnerLH Strong Emergence in Biological Systems: Is It Open to Mathematical Reasoning? Acta Biotheor 2021 69 4 841 56 Search in Google Scholar

Kirschner M, Gerhart J, Mitchison T. Molecular “Vitalism”. Cell. 2000;100(1):79–88. KirschnerM GerhartJ MitchisonT Molecular “Vitalism” Cell 2000 100 1 79 88 Search in Google Scholar

Thorisson GA, Muilu J, Brookes AJ. Genotype-phenotype databases: Challenges and solutions for the post-genomic era. Nature Reviews Genetics. 2009;10(1):9–18. ThorissonGA MuiluJ BrookesAJ Genotype-phenotype databases: Challenges and solutions for the post-genomic era Nature Reviews Genetics 2009 10 1 9 18 Search in Google Scholar

Steele EJ, Al-Mufti S, Augustyn KA, Chandrajith R, Coghlan JP, Coulson SG, et al. Cause of Cambrian Explosion - Terrestrial or Cosmic? Prog Biophys Mol Biol. 2018;136:3–23. SteeleEJ Al-MuftiS AugustynKA ChandrajithR CoghlanJP CoulsonSG Cause of Cambrian Explosion - Terrestrial or Cosmic? Prog Biophys Mol Biol. 2018 136 3 23 Search in Google Scholar

Bangert K. Und sie dreht sich doch! 50 Antworten auf die Frage, wie alles begann. Darmstadt, Germany: Theiss, WBG Darmstadt; 2015. BangertK Und sie dreht sich doch! 50 Antworten auf die Frage, wie alles begann Darmstadt, Germany Theiss, WBG Darmstadt; 2015 Search in Google Scholar

Layer PG. “Life” shaped by genes that depend on their surrounds. In: Wissemann V, Bereiter-Hahn J, Gutmann M, editors. Ann History Philosophy Biol. Göttingen: Universitätsverlag Göttingen; 2011. p. 153–70. LayerPG “Life” shaped by genes that depend on their surrounds In: WissemannV Bereiter-HahnJ GutmannM editors. Ann History Philosophy Biol. Göttingen Universitätsverlag Göttingen 2011 153 70 Search in Google Scholar

Bachmann G, Frohns F, Thangaraj G, Bausch A, Layer PG. IPL sublamination in chicken retinal spheroids is initiated via Müller cells and cholinergic differentiation, and is disrupted by NMDA signaling. Investig Ophthalmol Vis Sci. 2019;60(14 doi: 10.1167/iovs.18-24952):4759–73. BachmannG FrohnsF ThangarajG BauschA LayerPG IPL sublamination in chicken retinal spheroids is initiated via Müller cells and cholinergic differentiation, and is disrupted by NMDA signaling Investig Ophthalmol Vis Sci 2019 60 14 10.1167/iovs.18-24952 4759 73 Open DOISearch in Google Scholar

Bytyqi AH, Bachmann G, Rieke M, Paraoanu LE, Layer PG. Cell-by-cell reconstruction in reaggregates from neonatal gerbil retina begins from the inner retina and is promoted by retinal pigmented epithelium. Eur J Neurosci. 2007;26(6): 1560–74. BytyqiAH BachmannG RiekeM ParaoanuLE LayerPG Cell-by-cell reconstruction in reaggregates from neonatal gerbil retina begins from the inner retina and is promoted by retinal pigmented epithelium Eur J Neurosci 2007 26 6 1560 74 Search in Google Scholar

Rieke M, Bytyqi A, Frohns F, Layer PG. Reconstructing Mammalian Retinal Tissue: Wnt3a Regulates Laminar Polarity in Retinal Spheroids from Neonatal Mongolian Rats, while RPE Promotes Cell Differentiation. Int J Stem cell Res Ther. 2018;5(1):1–11. RiekeM BytyqiA FrohnsF LayerPG Reconstructing Mammalian Retinal Tissue: Wnt3a Regulates Laminar Polarity in Retinal Spheroids from Neonatal Mongolian Rats, while RPE Promotes Cell Differentiation Int J Stem cell Res Ther 2018 5 1 1 11 Search in Google Scholar

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