AI Article Synopsis

  • Kleb. is a pathogenic fungus that leads to wilting and early dying in potatoes. Genetic mapping of resistance identified a major QTL on chromosome 5 linked to maturity and tuberization, and another QTL on chromosome 9 that interacts significantly with the first.
  • The resistance alleles StCDF1.1 and StCDF1.3 were sequenced, showing an interaction with the fungal pathogen, while eQTL analysis revealed key genes related to chloroplast functions and fungal defense.
  • Overall, the results indicate that the identified genetic pathways play a crucial role in enhancing fungal defense and influencing tuberization timing to mitigate early dying caused by the fungus.

Article Abstract

Kleb. is a pathogenic fungus causing wilting, chlorosis, and early dying in potato ( L.). Genetic mapping of resistance to was done using a diploid population of potato. The major quantitative trait locus (QTL) for resistance was found on chromosome 5. The gene, controlling earliness of maturity and tuberization, was mapped within the interval. Another QTL on chromosome 9 co-localized with the wilt resistance gene marker. Epistasis analysis indicated that the loci on chromosomes 5 and 9 had a highly significant interaction, and that functioned downstream of The alleles were sequenced and found to encode StCDF1.1 and StCDF1.3. Interaction between the resistance allele and the was demonstrated, but not for Genome-wide expression QTL (eQTL) analysis was performed and genes with eQTL at the and loci were both found to have similar functions involving the chloroplast, including photosynthesis, which declines in both maturity and wilt. Among the gene ontology (GO) terms that were specific to genes with eQTL at the , but not the locus, were those associated with fungal defense. These results suggest that controls fungal defense and reduces early dying in wilt through affecting genetic pathway controlling tuberization timing.

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Source
http://dx.doi.org/10.3835/plantgenome2017.05.0040DOI Listing

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