AI Article Synopsis

  • Current strategies to control Verticillium wilt of olive (VWO) are limited, highlighting the need for new approaches in olive crossbreeding programs.
  • This study analyzed the basal metabolome of 43 olive cultivars with different resistance levels, using a cutting-edge UHPLC-ESI-TimsTOF MS/MS platform to identify over 70 metabolites across olive organs (roots, stems, and leaves).
  • Significant differences in the metabolome were found between resistant and susceptible cultivars, with stem tissue showing the most potential for distinguishing between them, identified by key markers related to VWO susceptibility.

Article Abstract

The limited effectiveness of current strategies to control Verticillium wilt of olive (VWO) prompts the need for innovative approaches. This study explores the basal metabolome of 43 olive cultivars with varying resistance levels to , offering alternative insights for olive crossbreeding programmes. The use of an innovative UHPLC-ESI-TimsTOF MS/MS platform enabled the annotation of more than 70 compounds across different olive organs (root, stem, and leaf) and the creation of a preliminary compilation of CCS experimental data for more reliable metabolite annotation. Moreover, it allowed the documentation of numerous isomeric species in the studied olive organs by resolving hidden compounds. Multivariate statistical analyses revealed significant metabolome variability between highly resistant and susceptible cultivars, which was further investigated through supervised PLS-DA. Key markers indicative of VWO susceptibility were annotated and characteristic compositional patterns were established. Stem tissue exhibited the highest discriminative capability, while root and leaf tissues also showed significant predictive potential.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11638956PMC
http://dx.doi.org/10.1021/acs.jafc.4c07155DOI Listing

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