Infinite graphs in systematic biology, with an application to the species problem

Acta Biotheoretica 61 (2):181--201 (2013)
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Abstract

We argue that C. Darwin and more recently W. Hennig worked at times under the simplifying assumption of an eternal biosphere. So motivated, we explicitly consider the consequences which follow mathematically from this assumption, and the infinite graphs it leads to. This assumption admits certain clusters of organisms which have some ideal theoretical properties of species, shining some light onto the species problem. We prove a dualization of a law of T.A. Knight and C. Darwin, and sketch a decomposition result involving the internodons of D. Kornet, J. Metz and H. Schellinx. A further goal of this paper is to respond to B. Sturmfels’ question, “Can biology lead to new theorems?”

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Samuel Allen Alexander
Ohio State University (PhD)

Citations of this work

Biologically Unavoidable Sequences.Samuel Alexander - 2013 - Electronic Journal of Combinatorics 20 (1):1-13.

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References found in this work

On the origin of species.Charles Darwin - 1964 - New York: Oxford University Press. Edited by Gillian Beer.
Species concepts and species delimitation.Kevin de Queiroz - 2007 - Systematic Biology 56 (6):879-886.
Sorites paradox.Dominic Hyde - 2008 - Stanford Encyclopedia of Philosophy.

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