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    Segmental duplications drive the evolution of accessory regions in a major crop pathogen

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    Date
    2024
    Author
    van Westerhoven, A.
    Aguilera-Galvez, C.
    Nakasato-Tagami, G.
    Shi-Kunne, X.
    Martinez de la Parte, E.
    Chavarro Carero, E.
    Meijer, H.
    Feurtey, A.
    Maryani, N.
    Ordonez, N.
    Schneiders, H.
    Nijbroek, K.
    Wittenberg, A.H.J.
    Hofstede, R.
    Garcia-Bastidas, F.
    Sorensen, A.
    Swennen, R.
    Drenth, A.
    Stukenbrock, E.H.
    Kema, G.H.J.
    Seidl, M.F.
    Type
    Journal Article
    Review Status
    Peer Review
    Target Audience
    Scientists
    Metadata
    Show full item record
    Abstract/Description
    Many pathogens evolved compartmentalized genomes with conserved core and variable accessory regions (ARs) that carry effector genes mediating virulence. The fungal plant pathogen Fusarium oxysporum has such ARs, often spanning entire chromosomes. The presence of specific ARs influences the host range, and horizontal transfer of ARs can modify the pathogenicity of the receiving strain. However, how these ARs evolve in strains that infect the same host remains largely unknown. We defined the pan-genome of 69 diverse F. oxysporum strains that cause Fusarium wilt of banana, a significant constraint to global banana production, and analyzed the diversity and evolution of the ARs. Accessory regions in F. oxysporum strains infecting the same banana cultivar are highly diverse, and we could not identify any shared genomic regions and in planta-induced effectors. We demonstrate that segmental duplications drive the evolution of ARs. Furthermore, we show that recent segmental duplications specifically in accessory chromosomes cause the expansion of ARs in F. oxysporum. Taken together, we conclude that extensive recent duplications drive the evolution of ARs in F. oxysporum, which contribute to the evolution of virulence.
    https://doi.org/10.1101/2023.06.07.544053
    Multi standard citation
    Permanent link to this item
    https://hdl.handle.net/20.500.12478/8416
    IITA Authors ORCID
    Rony Swennenhttps://orcid.org/0000-0002-5258-9043
    Digital Object Identifier (DOI)
    https://doi.org/10.1101/2023.06.07.544053
    Research Themes
    Biotech and Plant Breeding
    IITA Subjects
    Agronomy; Banana; Food Security; Genetic Improvement; Plant Breeding; Plant Health; Plant Production
    Agrovoc Terms
    Pathogens; Fusarium Oxysporum; Bananas; Genomes; Evolution
    Regions
    ACP; Europe; North America
    Countries
    The Netherlands; United States of America
    Hubs
    Eastern Africa Hub
    Journals
    New Phytologist
    Collections
    • Journal and Journal Articles5286
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