A multireceptor six-phage cocktail consistently controls bacterial leaf spot of lettuce caused by Xanthomonas hortorum pv. vitians and improves harvest quality

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Abstract

Phage cocktails are promising biocontrol agents against bacterial plant diseases by broadening host range and limiting the emergence of resistant mutants. To date, nine lytic phages with properties suitable for biocontrol have been isolated against Xanthomonas hortorum pv. vitians , the causal agent of bacterial leaf spot of lettuce. Here, a six-phage cocktail was rationally designed based on complementary host ranges, covering 91% of tested vitians strains while maintaining strict phage specificity toward the pathovar. To design a robust biocontrol, three distinct phage infection strategies, identified by transposon insertion sequencing, were combined in a cocktail. The susceptibility determinants were involved in LPS biosynthesis, a modified O-antigen structure, and an outer membrane protein putatively linked to the type I secretion system. As these structures contribute to plant colonization and virulence, phage resistance is expected to impose substantial fitness costs. In growth-chamber experiments, the phage cocktail provided dose-dependent protection, with significant symptom reduction observed across all tested concentrations, from 17% at 10 6 PFU.mL -1 , to 34.7% at 10 7 PFU.mL -1 (two applications), and up to 66% at 10 8 PFU.mL -1 . In two independent field trials conducted across contrasting growing seasons, weekly applications consistently reduced disease severity by 30%, decreased the proportion of non-marketable lettuce heads by more than 84%, and reduced post-harvest trimming losses from 20.7% to 18.1% in summer and from 17.8% to 14.0% in autumn. These findings provide the first demonstration of a reproducible and effective phage-based biocontrol strategy against Xanthomonas hortorum pv . vitians under field conditions.

IMPORTANCE

In the context of growing food security challenges, sustainable strategies to control bacterial plant diseases are increasingly needed, particularly against Xanthomonas species, a leading genus of bacterial plant pathogens. Among these is Xanthomonas hortorum pv. vitians , the causal agent of bacterial leaf spot of lettuce, which occurs worldwide and for which no effective disease management strategies currently exists. While bacteriophages represent promising biocontrol agents, reliable phage-based treatments require overcoming major limitations, including narrow host range, bacterial resistance, and poor persistence under field conditions. Here, a six-phage cocktail combining complementary host ranges and distinct infection strategies was rationally designed and incorporated into a formulation containing an adjuvant already used in agriculture. The formulated phage cocktail provided disease protection under controlled conditions and reproducible efficacy across two field trials conducted in contrasting growing seasons. This study provides a framework for translating rational phage cocktail design into practical crop protection.

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