Whole-genome resequencing data support a single introduction of the invasive white pine sawfly, Diprion similis.

Hymenoptera adaptation invasion biology nonmodel genome phytophagous insect population structure

Journal

The Journal of heredity
ISSN: 1465-7333
Titre abrégé: J Hered
Pays: United States
ID NLM: 0375373

Informations de publication

Date de publication:
25 05 2023
Historique:
received: 05 10 2022
accepted: 23 02 2023
medline: 29 5 2023
pubmed: 25 2 2023
entrez: 24 2 2023
Statut: ppublish

Résumé

Biological introductions are unintended "natural experiments" that provide unique insights into evolutionary processes. Invasive phytophagous insects are of particular interest to evolutionary biologists studying adaptation, as introductions often require rapid adaptation to novel host plants. However, adaptive potential of invasive populations may be limited by reduced genetic diversity-a problem known as the "genetic paradox of invasions." One potential solution to this paradox is if there are multiple invasive waves that bolster genetic variation in invasive populations. Evaluating this hypothesis requires characterizing genetic variation and population structure in the invaded range. To this end, we assemble a reference genome and describe patterns of genetic variation in the introduced white pine sawfly, Diprion similis. This species was introduced to North America in 1914, where it has rapidly colonized the thin-needled eastern white pine (Pinus strobus), making it an ideal invasion system for studying adaptation to novel environments. To evaluate evidence of multiple introductions, we generated whole-genome resequencing data for 64 D. similis females sampled across the North American range. Both model-based and model-free clustering analyses supported a single population for North American D. similis. Within this population, we found evidence of isolation-by-distance and a pattern of declining heterozygosity with distance from the hypothesized introduction site. Together, these results support a single-introduction event. We consider implications of these findings for the genetic paradox of invasion and discuss priorities for future research in D. similis, a promising model system for invasion biology.

Identifiants

pubmed: 36827463
pii: 7057815
doi: 10.1093/jhered/esad012
doi:

Banques de données

Dryad
['10.5061/dryad.g4f4qrfv3']

Types de publication

Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Langues

eng

Sous-ensembles de citation

IM

Pagination

246-258

Informations de copyright

Published by Oxford University Press on behalf of The American Genetic Association 2023.

Auteurs

Jeremy S Davis (JS)

Department of Biology, University of Kentucky, Lexington, KY, United States.

Sheina Sim (S)

USDA-ARS, Daniel Inouye Pacific Basin Agricultural Research Center, Hilo, HI, United States.

Scott Geib (S)

USDA-ARS, Daniel Inouye Pacific Basin Agricultural Research Center, Hilo, HI, United States.

Brian Scheffler (B)

USDA-ARS, Jamie Whitten Delta States Research Center, Stoneville, MS, United States.

Catherine R Linnen (CR)

Department of Biology, University of Kentucky, Lexington, KY, United States.

Articles similaires

Smoking Cessation and Incident Cardiovascular Disease.

Jun Hwan Cho, Seung Yong Shin, Hoseob Kim et al.
1.00
Humans Male Smoking Cessation Cardiovascular Diseases Female
Humans United States Aged Cross-Sectional Studies Medicare Part C
1.00
Humans Yoga Low Back Pain Female Male
Humans Meals Time Factors Female Adult

Classifications MeSH