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Travel tales of a worldwide weed: genomic signatures reveal colonial trade routes and prior adaptation are key to the success of Plantago major

Authors :
Laura Caddy
Stephanie Dunbar-Co
Olwen M. Grace
Zhu Li
Haris Saslis-Lagoudakis
Dmitri Zubov
Hong-Keun Choi
Abdolbaset Ghorbani
Maonian Xu
Gustavo Hassemer
Nyree J. C. Zerega
Muthama Muasya
Helena Cotrim
Shyam Gopalakrishnan
Elliot M. Gardner
Hesham R. El-Seedi
Karen Martinez-Swatson
Carl J. Rothfels
M. Tomas P. Gilbert
Bruce Bennett
Sean Blaney
Michael Hislop
Peter Staub
Makoto Amano
Natalie Iwanycki Ahlstrand
Delgerbat Boldbaatar
Yester Yesil
Filipe G. Vieira
Deanne Bowers
Sornkanok Vimolmangkang
Alexey Shipunov
Carla Maldonado
Vincent Manzanilla
Madonna Bishop
Nina Rønsted
James Pringle
Heidi M. Meudt
Publication Year :
2020
Publisher :
Authorea, Inc., 2020.

Abstract

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 are thought to have been introduced to regions outside their native ranges by European voyagers and early colonists making transoceanic journeys; however, records are scare 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 test hypotheses that the plant was brought to new regions during colonial times. We further investigate how patterns in genomic diversity facilitate the success of this global weed. Although genomic differentiation among populations is found to be low, we identify six unique ecotypes showing very little sign of admixture. Three of the most prevalent of these ecotypes present in the native range gave rise to introduced populations in the Americas, Africa, Australia and New Zealand, indicating that more than one successful ecotype colonized and spread. The distribution of ecotypes is found to have links to colonial history, and ecotypes are further found to be restricted by latitude. Dispersal of multiple successful ecotypes and prior adaptation in the native range to latitudinally dependent environmental factors (such as climate) are likely reasons for the success of this prolific, global weed. Genomic signatures can provide new perspectives on the drivers behind the historic introductions and the successful colonization of introduced species in an era of global change.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........37b8d2e4c3f74467c683040acebbb225
Full Text :
https://doi.org/10.22541/au.159318399.99576221