Spatial Genetic Structure and Diversity Reveal Central‐Marginal Patterns in the Rare Freshwater Mussel,
Pleurobema riddellii
Alexander S. Zalmat, Matthew Harrison, Brad Littrell, Kyle T. Sullivan, Charles R. Randklev, Timothy H. Bonner, Noland H. Martin ABSTRACT
Aim
This study sought to evaluate how historical drainage connectivity and contemporary basin isolation have shaped population genetic structure and diversity in an imperilled species of freshwater mussel,
Location
Covers the range of
Methods
A genome‐wide single nucleotide polymorphism (SNP) dataset was generated using a restriction‐site associated DNA sequencing approach. After filtering and assembly, a dataset consisting of 12,062 SNP loci from 351 individuals was retained. Population genetic structure was evaluated using principal components analysis and a Bayesian clustering model, ENTROPY. Genetic differentiation among river basins was quantified using Nei's G ST and patterns of genetic diversity were assessed using observed heterozygosity and Watterson's θ .
Results
Population genetic analyses revealed structuring that corresponded closely with river basin boundaries. Centrally distributed populations from the Neches, Sabine and Calcasieu basins formed a genetically cohesive group characterised by low genetic differentiation and elevated genetic diversity. Marginal populations from the San Jacinto, Red, Ouachita and Pearl basins exhibited higher levels of genetic differentiation and reduced genetic diversity.
Main Conclusions
Here, we demonstrate a central‐marginal pattern in genomic structure and diversity across the range of