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    Candidate genes for field resistance to cassava brown streak disease revealed through the analysis of multiple data sources

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    Journal Article (436.6Kb)
    Date
    2023-11-03
    Author
    Ferguson, M.
    Eyles, R.P.
    Garcia-Oliveira, A.L.
    Kapinga, F.
    Masumba, E.A.
    Amuge, T.
    Bredeson, J.V.
    Rokhsar, D.S.
    Lyons, J.B.
    Shah, T.
    Rounsley, S.
    Mkamilo, G.
    Type
    Journal Article
    Review Status
    Peer Review
    Target Audience
    Scientists
    Metadata
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    Abstract/Description
    Cassava (Manihot esculenta Crantz) is a food and industrial storage root crop with substantial potential to contribute to managing risk associated with climate change due to its inherent resilience and in providing a biodegradable option in manufacturing. In Africa, cassava production is challenged by two viral diseases, cassava brown streak disease (CBSD) and cassava mosaic disease. Here we detect quantitative trait loci (QTL) associated with CBSD in a biparental mapping population of a Tanzanian landrace, Nachinyaya and AR37-80, phenotyped in two locations over three years. The purpose was to use the information to ultimately facilitate either marker-assisted selection or adjust weightings in genomic selection to increase the efficiency of breeding. Results from this study were considered in relation to those from four other biparental populations, of similar genetic backgrounds, that were phenotyped and genotyped simultaneously. Further, we investigated the co-localization of QTL for CBSD resistance across populations and the genetic relationships of parents based on whole genome sequence information. Two QTL on chromosome 4 for resistance to CBSD foliar symptoms and one on each of chromosomes 11 and 18 for root necrosis were of interest. Of significance within the candidate genes underlying the QTL on chromosome 4 are Phenylalanine ammonia-lyase (PAL) and Cinnamoyl-CoA reductase (CCR) genes and three PEPR1-related kinases associated with the lignin pathway. In addition, a CCR gene was also underlying the root necrosis-resistant QTL on chromosome 11. Upregulation of key genes in the cassava lignification pathway from an earlier transcriptome study, including PAL and CCR, in a CBSD-resistant landrace compared to a susceptible landrace suggests a higher level of basal lignin deposition in the CBSD-resistant landrace. Earlier RNAscope® in situ hybridisation imaging experiments demonstrate that cassava brown streak virus (CBSV) is restricted to phloem vessels in CBSV-resistant varieties, and phloem unloading for replication in mesophyll cells is prevented. The results provide evidence for the involvement of the lignin pathway. In addition, five eukaryotic initiation factor (eIF) genes associated with plant virus resistance were found within the priority QTL regions.
    https://doi.org/10.3389/fpls.2023.1270963
    Multi standard citation
    Permanent link to this item
    https://hdl.handle.net/20.500.12478/8680
    IITA Authors ORCID
    Morag Fergusonhttps://orcid.org/0000-0002-7763-5173
    Rodney Eyleshttps://orcid.org/0000-0002-8138-2180
    Garcia-Oliveira ALhttps://orcid.org/0000-0001-8561-4172
    Trushar Shahhttps://orcid.org/0000-0002-0091-7981
    Digital Object Identifier (DOI)
    https://doi.org/10.3389/fpls.2023.1270963
    Research Themes
    Biotech and Plant Breeding
    IITA Subjects
    Agronomy; Cassava; Disease Control; Food Security; Plant Breeding; Plant Production
    Agrovoc Terms
    Lignins; Phenylalanine Ammonia Lyase; Quantitative Trait Loci; Cassava; African Cassava Mosaic Virus; Food Security
    Regions
    Africa; East Africa
    Countries
    Tanzania
    Hubs
    Eastern Africa Hub
    Journals
    Frontiers in Plant Science
    Collections
    • Journal and Journal Articles5283
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