Related Experiment Video
Updated: Aug 6, 2026

Manipulation of Ploidy in Caenorhabditis elegans
Published on: March 15, 2018
Evolution of biogeographic patterns, ploidy levels, and breeding systems in a diploid-polyploid species complex of
Alessia Guggisberg1, Guilhem Mansion, Sylvia Kelso
1Institut für Systematische Botanik, Universität Zürich, Zollikerstrasse 107, CH-8008 Zürich, Switzerland. alg@systbot.unizh.ch
Abstract:
Primula sect. Aleuritia subsect. Aleuritia (Aleuritia) includes diploid, self-incompatible heterostyles and polyploid, self-compatible homostyles, the latter generally occurring at higher latitudes than the former. This study develops a phylogenetic hypothesis for Aleuritia to elucidate the interactions between Pleistocene glacial cycles, biogeographic patterns, ploidy levels and breeding systems. Sequences from five chloroplast DNA loci were analyzed with parsimony to reconstruct a phylogeny, haplotype network, and ancestral states for ploidy levels and breeding systems.The results supported the monophyly of Aleuritia and four major biogeographic lineages: an amphi-Pacific, a South American, an amphi-Atlantic and a European/North American lineage. At least four independent switches to homostyly and five to polyploidy were inferred. An Asian ancestor probably gave origin to an amphi-Pacific clade and to a lineage that diversified on the European and American continents. Switches to homostyly occurred exclusively in polyploid lineages, which mainly occupy previously glaciated areas. The higher success of the autogamous polyploid species at recolonizing habitats freed by glacial retreat might be explained in terms of selection for reproductive assurance.
Related Concept Videos
Formation of Species
Speciation Rates
Introduction to Plant Diversity
Genetics of Speciation
Hybrid Zones
Polytene Chromosomes

