Future directions emphasise multi-omics integration to decode immune-metabolic crosstalk
First-pass extracted concept
multi-omics integration
Candidate: concept label2 source documents3 linked claims
Live refresh every 5sNext refresh in 5s
Evidence Snippets
Recent advances in QTL mapping, pangenomics, multi-omics integration, genomic selection, and CRISPR-based modification of metabolic and structural defense traits have transformed the landscape of resistance breeding.
Supporting Sources
Source 1primary paper2026AGR
Linked Claims
Multi-omics integration is emphasized as a future direction to decode immune-metabolic crosstalk.
QTL mapping, pangenomics, multi-omics integration, genomic selection, and CRISPR-based modification of defense traits have transformed whitefly resistance breeding.
Integrating classical genetics, modern biotechnology, multi-omics, and AI-driven decision frameworks can enable breeding programs to more rapidly develop robust climate-resilient vegetable cultivars with whitefly resistance.