DOI: 10.3390/agronomy16161567 ISSN: 2073-4395

Molecular Induction of Defense-Related Genes in Perennial Fruit Crops by Native Pseudomonas protegens Strains

Braulio Ruiz, Mauricio Sanz, Yerko Lovera, Juan San Martin, Ernesto Moya-Elizondo

Chile is a global leader in the fruit industry; however, the sector faces significant yield losses due to phytopathogens and an urgent need to reduce reliance on chemical fungicides. Induction of plant defenses and priming offer sustainable alternatives by activating the plant’s innate immune system. This study aimed to evaluate the ability of native Pseudomonas protegens strains and their formulations to trigger plant defense responses in five agronomically important fruit crops: kiwifruit (Actinidia chinensis var. deliciosa), walnut (Juglans regia), cherry (Prunus avium), blueberry (Vaccinium corymbosum), and grapevine (Vitis vinifera). Under controlled conditions, a randomized block design was implemented with four treatments, including P. protegens strains and their formulations, as well as a chemical elicitor (acibenzolar-S-methyl) as a positive control. Foliar treatments were applied, and leaf tissues were sampled at 1 day, 7 days, and 14 days post-inoculation. Transcriptional responses were quantified via qPCR using the ΔΔCt method, targeting key defense-related genes, including pathogenesis-related proteins (pr1, pr2, pr3, pr5, pr10) and enzymes of the phenylpropanoid and signaling pathways (pal, chs, ppo, lox9, glc). This study provides a molecular framework for understanding how biological inducers modulate defense-related gene expression in perennial crops. The results highlight the potential of native bacteria to be integrated into sustainable integrated pest management programs, offering an alternative strategy to trigger defense-related transcriptional activation in fruit perennial crops.

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