Virus-induced gene silencing (VIGS) demonstrates effective silencing of the phytoene desaturase gene in melon, suggesting novel applications in crop research.
In this study, the insert length, location within the coat protein-encoding gene, and se-quence orientation of the target fragment were optimized to construct an efficient vi-rus-induced gene silencing (VIGS) system in melon using a tomato leaf curl New Delhi virus (ToLCNDV) vector. The melon phytoene desaturase gene (CmPDS), a key regulator of chlorophyll biosynthesis, was selected as a reporter gene to evaluate the effects of the VIGS system. Our results revealed that the melon leaves in all the VIGS treatments exhibited a typical photobleaching phenotype at 21 days post-inoculation. Moreover, reverse tran-scription quantitative real-time PCR revealed a significant reduction in the mRNA levels of PDS in melon. The highest silencing efficiency (lowest PDS mRNA levels) was achieved by the VIGS vector harboring a 165 bp CmPDS fragment at the 3' end of the AV1 gene. These findings will be highly important for the development of novel ToLCNDV-based si-lencing vector tools and their application to functional genomics and cucurbit crop dis-ease resistance breeding research in the future.
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Han et al. (2025) studied this question.
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