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  Multiple Sources of Introduction of North American Arabidopsis thaliana from across Eurasia

Shirsekar, G., Devos, J., Latorre, S., Blaha, A., Queiroz Dias, M., González Hernando, A., et al. (2021). Multiple Sources of Introduction of North American Arabidopsis thaliana from across Eurasia. Molecular Biology and Evolution, 38(12), 5328-5344. doi:10.1093/molbev/msab268.

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 Creators:
Shirsekar, G1, Author           
Devos, J1, Author           
Latorre, S1, Author           
Blaha, A2, Author           
Queiroz Dias, M1, Author           
González Hernando, A1, Author           
Lundberg, DS1, Author           
Burbano, HA1, Author           
Fenster, CB, Author
Weigel, D1, Author           
Affiliations:
1Department Molecular Biology, Max Planck Institute for Developmental Biology, Max Planck Society, ou_3375790              
2Department Biochemistry, Max Planck Institute for Developmental Biology, Max Planck Society, ou_3375718              

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 Abstract: Large-scale movement of organisms across their habitable range, or migration, is an important evolutionary process that can shape genetic diversity and influence the adaptive spread of alleles. Although human migrations have been studied in great detail with modern and ancient genomes, recent anthropogenic influence on reducing the biogeographical constraints on the migration of nonnative species has presented opportunities in several study systems to ask the questions about how repeated introductions shape genetic diversity in the introduced range. We present an extensive overview of population structure of North American Arabidopsis thaliana by studying a set of 500 whole-genome sequenced and over 2,800 RAD-seq genotyped individuals in the context of global diversity represented by Afro-Eurasian genomes. We use methods based on haplotype and rare-allele sharing as well as phylogenetic modeling to identify likely sources of introductions of extant N. American A. thaliana from the native range in Africa and Eurasia. We find evidence of admixture among the introduced lineages having increased haplotype diversity and reduced mutational load. We also detect signals of selection in immune-system-related genes that may impart qualitative disease resistance to pathogens of bacterial and oomycete origin. We conclude that multiple introductions to a nonnative range can rapidly enhance the adaptive potential of a colonizing species by increasing haplotypic diversity through admixture. Our results lay the foundation for further investigations into the functional significance of admixture.

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 Dates: 2021-12
 Publication Status: Issued
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 Rev. Type: -
 Identifiers: DOI: 10.1093/molbev/msab268
PMID: 34499163
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Title: Molecular Biology and Evolution
  Other : Mol. Biol. Evol.
Source Genre: Journal
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Publ. Info: Oxford : Oxford University Press
Pages: - Volume / Issue: 38 (12) Sequence Number: - Start / End Page: 5328 - 5344 Identifier: ISSN: 0737-4038
CoNE: https://pure.mpg.de/cone/journals/resource/954925536119