Related Experiment Video
Updated: Sep 19, 2026

Novel Sequence Discovery by Subtractive Genomics
Published on: January 25, 2019
Mitochondrial genome-derived microsatellites reveal genetic diversity and population structure in Callery pear
Alina Pokhrel1, Denita Hadziabdic1, Robert N Trigiano1
1Department of Entomology and Plant Pathology, University of Tennessee, Knoxville, Tennessee, United States of America.
Abstract:
Callery pear (Pyrus calleryana Decne.; PC) possesses many desirable characteristics valued in managed landscapes. This has driven the release of numerous cultivars, including both hybrids and selections derived from native populations. The extensive planting of PC cultivars in managed areas has contributed to the widespread occurrence of invasive individuals across a broad range of habitats in the eastern United States (US). Self-incompatibility, tolerance to various environmental conditions, pathogen and pest resistance, intraspecific hybridization among the cultivars, possible interspecific hybridization with other Pyrus species, and seed dispersal by various vertebrates have contributed to the spread and persistence of PC across diverse environments. Because effective and environmentally appropriate management options remain limited, improved understanding of PC genetics may help inform management strategies. Previous studies have characterized PC diversity using nuclear genomic short sequence repeats (gSSRs), however, neither a mitochondrial genome resource nor mitochondrial short sequence repeats (mtSSRs) have been developed for this purpose. Here, we assembled a mitochondrial genome of 485,892 bp and used five mtSSRs to characterize mitochondrial diversity and population structure among accessions from the species' native range in Asia (n = 72), southeastern US escapees (SNesc; n = 90), Tennessee escapees (TNesc; n = 90), and US-released commercial cultivars (UScult; n = 69 representing 14 unique cultivars). We found a high genetic diversity (He = 0.728) and evidence of genetic structure in PC. In distance-based and multivariate analyses, UScult occupied an intermediate position between the Asian populations and the US escapees. The observed mitochondrial diversity among samples assigned to PC cultivars is consistent with a complex genetic landscape and may reflect distinct maternal lineages, cultivar-labeling or record-keeping discrepancies, and/or technical variation. This study underscores the need for broader genomic investigations using authenticated cultivar reference material and high-resolution nuclear markers to resolve cultivar ancestry, validate true-to-name identity, and inform species management.
Related Concept Videos
Evolutionary Relationships through Genome Comparisons
Comparing Mitochondrial, Chloroplast, and Prokaryotic Genomes
Animal Mitochondrial Genetics
Genetic Variation
Genes exist in different versions called alleles, which...
Fruit Development, Structure, and Function
Export of Mitochondrial and Chloroplast Genes
