Experimental Evolution of on Tomato Reveals Rapid Genotypic and Phenotypic Adaptation and Dynamic RXLR Genome Variation.

David A Rasmussen, Allison Coomber, Jean Beagle Ristaino

Journal: Phytopathology 2025;115(8):998-1007

PMID: 40323365

Abstract

The late blight pathogen, , poses a significant threat to tomato crops worldwide. To understand the potential for rapid adaptation of this pathogen, we conducted an in vitro experimental evolution study with four US-23 lineages collected from tomato hosts with different combinations of resistance genes ( genes). These isolates were passed serially over eight generations on five tomato cultivars. After infection, targeted sequencing of the pathogen's RXLR effector genes was done. In just eight generations, we observed both phenotypic and genotypic changes in the US-23 lineages, with differences in disease severity among pathogen isolates and alterations in the RXLR genome. Our findings suggest rapid mutation even in a clonally reproducing lineage, highlighting the potential for adaptation of within a single growing season on tomato. These insights shed light on the adaptability of this devastating pathogen and emphasize the importance of considering tomato host resistance in late blight management strategies.

Address: Department of Entomology and Plant Pathology, NC State University, Raleigh, NC, U.S.A.; Functional Genomics Program, NC State University, Raleigh, NC, U.S.A.; Department of Entomology and Plant Pathology, NC State University, Raleigh, NC, U.S.A.; Bioinformatics Research Center, NC State University, Raleigh, NC, U.S.A.; Emerging Plant Disease and Global Food Security Cluster, NC State University, Raleigh, NC, U.S.A.; Department of Entomology and Plant Pathology, NC State University, Raleigh, NC, U.S.A.; Emerging Plant Disease and Global Food Security Cluster, NC State University, Raleigh, NC, U.S.A.

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