Travel Tales of a Worldwide Weed: Genomic Signatures of Plantago major L. Reveal Distinct Genotypic Groups With Links to Colonial Trade Routes

Natalie Iwanycki Ahlstrand, Shyam Gopalakrishnan, Filipe G. Vieira, Vanessa C. Bieker, Heidi M. Meudt, Stephanie Dunbar-Co, Carl J. Rothfels, Karen A. Martinez-Swatson, Carla Maldonado, Gustavo Hassemer, Alexey Shipunov, M. Deane Bowers, Elliot Gardner, Maonian Xu, Abdolbaset Ghorbani, Makoto Amano, Olwen M. Grace, James S. Pringle, Madonna Bishop, Vincent ManzanillaHelena Cotrim, Sean Blaney, Dimitri Zubov, Hong Keun Choi, Yeter Yesil, Bruce Bennett, Sornkanok Vimolmangkang, Hesham R. El-Seedi, Peter O. Staub, Zhu Li, Delgerbat Boldbaatar, Michael Hislop, Laura J. Caddy, A. Muthama Muasya, C. Haris Saslis-Lagoudakis, M. Thomas P. Gilbert, Nyree J.C. Zerega, Nina Rønsted

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Resumen

Retracing pathways of historical species introductions is fundamental to understanding the factors involved in the successful colonization and spread, centuries after a species’ establishment in an introduced range. Numerous plants have been introduced to regions outside their native ranges both intentionally and accidentally by European voyagers and early colonists making transoceanic journeys; however, records are scarce to document this. We use genotyping-by-sequencing and genotype-likelihood methods on the selfing, global weed, Plantago major, collected from 50 populations worldwide to investigate how patterns of genomic diversity are distributed among populations of this global weed. Although genomic differentiation among populations is found to be low, we identify six unique genotype groups showing very little sign of admixture and low degree of outcrossing among them. We show that genotype groups are latitudinally restricted, and that more than one successful genotype colonized and spread into the introduced ranges. With the exception of New Zealand, only one genotype group is present in the Southern Hemisphere. Three of the most prevalent genotypes present in the native Eurasian range gave rise to introduced populations in the Americas, Africa, Australia, and New Zealand, which could lend support to the hypothesis that P. major was unknowlingly dispersed by early European colonists. Dispersal of multiple successful genotypes is a likely reason for success. Genomic signatures and phylogeographic methods can provide new perspectives on the drivers behind the historic introductions and the successful colonization of introduced species, contributing to our understanding of the role of genomic variation for successful establishment of introduced taxa.

Idioma originalInglés
Número de artículo838166
PublicaciónFrontiers in Plant Science
Volumen13
DOI
EstadoPublicada - 9 jun. 2022
Publicado de forma externa

Nota bibliográfica

Publisher Copyright:
Copyright © 2022 Iwanycki Ahlstrand, Gopalakrishnan, Vieira, Bieker, Meudt, Dunbar-Co, Rothfels, Martinez-Swatson, Maldonado, Hassemer, Shipunov, Bowers, Gardner, Xu, Ghorbani, Amano, Grace, Pringle, Bishop, Manzanilla, Cotrim, Blaney, Zubov, Choi, Yesil, Bennett, Vimolmangkang, El-Seedi, Staub, Li, Boldbaatar, Hislop, Caddy, Muasya, Saslis-Lagoudakis, Gilbert, Zerega and Rønsted.

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