Author

Xueping Zhang

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Open access Jul 2026

Genome-Wide Identification and Stress Response Analysis of the GATA Gene Family in Eggplant (Solanum melongena L.)

GATA transcription factors represent a conserved family of regulatory proteins that modulate plant growth and stress adaptation. While GATA families have been well characterized in model plants and Solanaceae crops, their evolutionary and functional features remain poorly defined in eggplant (Solanum melongena L.). Here, we systematically characterized the SmGATA gene family using the latest eggplant V4.1 reference genome and multi-stress transcriptome data. A total of 29 SmGATA genes were identified, with segmental duplication predominantly driving family expansion under strong purifying selection. Cross-species synteny analysis revealed high conservation of GATA homologs within Solanaceae species. Phylogenetic clustering divided SmGATA genes into four subfamilies, whose members exhibited conserved gene structures and motif compositions. Numerous cis-acting elements associated with plant growth, phytohormone signaling, and stress responses were enriched in SmGATA promoters. Tissue-specific expression analysis demonstrated the extensive involvement of SmGATA genes in eggplant organ development. Combined transcriptome screening and qRT-PCR validation identified multiple stress-responsive SmGATA members. Notably, SmGATA5 showed differential expression under high- and low-temperature conditions, and SmGATA17 exhibited the broadest spectrum of responses to abiotic and biotic stresses. This study elucidates the evolutionary conservation and functional diversity of the eggplant GATA family, providing valuable candidate genes for future functional research and stress-tolerant molecular breeding in eggplant.

Yang Huang, Li Jia, Kunyu Ma et al. · 0 citations