Low degree equations for phylogenetic group-based models
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Motivated by phylogenetics, our aim is to obtain a system of low degree equations that define a phylogenetic variety on an open set containing the biologically meaningful points. In this paper we consider phylogenetic varieties defined via group-based models. For any finite abelian group G, we provide an explicit construction of codimX polynomial equations (phylogenetic invariants) of degree at most |G| that define the variety X on a Zariski open set U. The set U contains all biologically meaningful points when G is the group of the Kimura 3-parameter model. In particular, our main result confirms (Michałek, Toric varieties: phylogenetics and derived categories, PhD thesis, Conjecture 7.9, 2012) and, on the set U, Conjectures 29 and 30 of Sturmfels and Sullivant (J Comput Biol 12:204–228, 2005).
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CASANELLAS, Marta, Jesús FERNÁNDEZ-SÁNCHEZ, Mateusz MICHALEK, 2015. Low degree equations for phylogenetic group-based models. In: Collectanea Mathematica. Springer. 2015, 66(2), pp. 203-225. ISSN 0010-0757. eISSN 2038-4815. Available under: doi: 10.1007/s13348-014-0120-0BibTex
@article{Casanellas2015degre-52518, year={2015}, doi={10.1007/s13348-014-0120-0}, title={Low degree equations for phylogenetic group-based models}, number={2}, volume={66}, issn={0010-0757}, journal={Collectanea Mathematica}, pages={203--225}, author={Casanellas, Marta and Fernández-Sánchez, Jesús and Michalek, Mateusz} }
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