The Multi-Causal Basis of Developmental Potential Construction
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[1] L. Rosa,et al. Dispositional Properties in Evo-Devo , 2018, Evolutionary Developmental Biology.
[2] Ingo Brigandt,et al. Evolvability as a Disposition: Philosophical Distinctions, Scientific Implications , 2021 .
[3] S. Newman. Inherency , 2021, Evolutionary Developmental Biology.
[4] M. Pavlicev,et al. Pregnant Females as Historical Individuals: An Insight From the Philosophy of Evo-Devo , 2021, Frontiers in Psychology.
[5] G. Vallejos,et al. A relational-constructionist account of protein macrostructure and function , 2020, Foundations of Chemistry.
[6] Davide Vecchi. DNA is not an ontologically distinctive developmental cause. , 2019, Studies in history and philosophy of biological and biomedical sciences.
[7] Marie I. Kaiser,et al. Potentiality in Biology , 2018 .
[8] Yuming Sun,et al. Role of Silicon on Plant–Pathogen Interactions , 2017, Front. Plant Sci..
[9] C. Austin. The dispositional genome: primus inter pares , 2015 .
[10] J. Mckitrick. Dispositions and Potentialities , 2014 .
[11] D. McShea,et al. Complexity by Subtraction , 2013, Evolutionary Biology.
[12] Yunhan Hong,et al. Interordinal chimera formation between medaka and zebrafish for analyzing stem cell differentiation. , 2012, Stem cells and development.
[13] Ahmed Moustafa,et al. The making of a photosynthetic animal , 2011, Journal of Experimental Biology.
[14] Laura Nuño de la Rosa. Becoming organisms: the organisation of development and the development of organisation. , 2010, History and philosophy of the life sciences.
[15] Callen Hyland,et al. Ecological Developmental Biology: Integrating Epigenetics, Medicine, and Evolution , 2009, The Yale Journal of Biology and Medicine.
[16] 吕一旭 Yixu Lu. 引言 (Introduction) , 2009, Provincial China.
[17] E. Koonin. Darwinian evolution in the light of genomics , 2008, Nucleic acids research.
[18] D. Bhattacharya,et al. Horizontal gene transfer of the algal nuclear gene psbO to the photosynthetic sea slug Elysia chlorotica , 2008, Proceedings of the National Academy of Sciences.
[19] W. Martin,et al. Hydrothermal vents and the origin of life , 2008, Nature Reviews Microbiology.
[20] W. Martin,et al. On the origin of biochemistry at an alkaline hydrothermal vent , 2007, Philosophical Transactions of the Royal Society B: Biological Sciences.
[21] A. Stoltzfus. Mutationism and the dual causation of evolutionary change , 2006, Evolution & development.
[22] J. Daly,et al. Melyrid beetles (Choresine): a putative source for the batrachotoxin alkaloids found in poison-dart frogs and toxic passerine birds. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[23] A. Love. Evolvability, Dispositions, and Intrinsicality , 2003, Philosophy of Science.
[24] Alessandro Minelli,et al. The Development of Animal Form: Ontogeny, Morphology, and Evolution , 2003 .
[25] Alexander Rosenberg,et al. Reductionism Redux: Computing the Embryo , 1997 .
[26] D. Wahlsten,et al. Intelligence, heredity, and environment: The invalid separation of effects of nature and nurture: Lessons from animal experimentation , 1996 .
[27] E. Epstein. The anomaly of silicon in plant biology. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[28] Scott F. Gilbert,et al. Epigenetic landscaping: Waddington's use of cell fate bifurcation diagrams , 1991 .
[29] C. Sanislow,et al. Norm-of-reaction: definition and misinterpretation of animal research. , 1988, Journal of comparative psychology.
[30] Elliott Sober,et al. Evolution, Population Thinking, and Essentialism , 1980, Philosophy of Science.
[31] H. Maturana,et al. Autopoiesis and Cognition : The Realization of the Living (Boston Studies in the Philosophy of Scie , 1980 .
[32] L Wolpert,et al. Towards a theory of development. , 1975, Federation proceedings.
[33] W. J. Hamilton,et al. PRINCIPLES OF EMBRYOLOGY , 1956 .