Isabel M Fortes, Rafael Fernández-Muñoz, Enrique Moriones
Journal: Phytopathology 2023;113(7):1347-1359
PMID: 36690608
Tomato yellow leaf curl disease (TYLCD) causes severe damage to tomato crops in warm regions of the world, and is associated with infections of several whitefly ()-transmitted single-stranded (ss)DNA begomoviruses (genus , family ). The most widespread begomovirus isolates associated with TYLCD are those of the type strain of the species, known as Israel (TYLCV-IL). The gene is widely used in commercial tomato cultivars to control TYLCV-IL damage, providing resistance to the virus by restricting viral accumulation and tolerance to TYLCD by inhibiting disease symptoms. However, several reports suggest that TYLCV-IL-like isolates are adapting to the gene and are causes of concern for possibly overcoming the provided control. This is the case with TYLCV-IL IS76-like recombinants that have a small genome fragment acquired by genetic exchange from an isolate of , another begomovirus species associated with TYLCD. Here we show that TYLCV-IL IS76-like isolates partially break down the TYLCD-tolerance provided by the gene and that virulence differences might exist between isolates. Interestingly, we demonstrate that mixed infections with an isolate of the crinivirus (genus , family ) species (ToCV), an ssRNA virus also transmitted by and emerging worldwide in tomato crops, boosts the breakdown of the TYLCD-tolerance provided by the gene either with TYLCV-IL IS76-like or canonical TYLCV-IL isolates. Moreover, we demonstrate the incorporation of the gene in -commercial tomatoes to restrict (no virus or virus traces, no symptoms) systemic infections of recombinant TYLCV-IL IS76-like and canonical TYLCV-IL isolates, even in the presence of ToCV infections, which provides more robust and durable control of TYLCD.
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