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Updated: Sep 23, 2025

A Practical Guide to Phylogenetics for Nonexperts
Published on: February 5, 2014
Phylogenetics in space: How continuous spatial structure impacts tree inference
Zachary B Hancock1, Emma S Lehmberg2, Heath Blackmon2
1Department of Biology at Texas A&M University, College Station, TX 77840, United States; Ecology & Evolutionary Biology IDP at Texas A&M University, College Station, TX 77840, United States; Department of Integrative Biology, Michigan State University, 293 Farm Ln., East Lansing, MI 48825, United States.
Abstract:
The tendency to discretize biology permeates taxonomy and systematics, leading to models that simplify the often continuous nature of populations. Even when the assumption of panmixia is relaxed, most models still assume some degree of discrete structure. The multispecies coalescent has emerged as a powerful model in phylogenetics, but in its common implementation is entirely space-independent - what we call the "missing z-axis". In this article, we review the many lines of evidence for how continuous spatial structure can impact phylogenetic inference. We illustrate and expand on these by using complex continuous-space demographic models that include distinct modes of speciation. We find that the impact of spatial structure permeates all aspects of phylogenetic inference, including gene tree stoichiometry, topological and branch-length variance, network estimation, and species delimitation. We conclude by utilizing our results to suggest how researchers can identify spatial structure in phylogenetic datasets.
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