AI Article Synopsis

  • * Disruption of the DND1 gene increases tomato plant resistance to powdery mildew but can negatively impact overall plant health; thus, a method to balance these effects is needed.
  • * Using CRISPR-Cas9 technology, researchers modified the DND1 gene in the tomato variety Moneymaker, leading to plants with reduced powdery mildew symptoms and various growth traits, while ensuring no harmful off-target mutations.

Article Abstract

Powdery mildew (PM), triggered by Oidium neolycopersici, represents a significant threat and a major concern for the productivity of tomato plants (Solanum lycopersicum L.). The presence of susceptibility (S) genes in plants facilitates pathogen proliferation and their dysfunction can lead to a recessively inherited broad-spectrum and durable type of resistance. Past studies have demonstrated that disrupting the function of DND1 (Defense No Death 1) increases plant resilience against various pathogens, such as powdery mildew (PM), but this comes at the cost of negatively affecting the overall health and vigor of the plant. To investigate the possibility of minimizing the adverse effects of the dnd1 mutation while boosting disease resistance, a CRISPR-Cas9 construct with four single guide RNAs targeting three exons of SlDND1 (Solyc02g088560.4.1) was designed and introduced into the tomato variety Moneymaker (MM) through Agrobacterium tumefaciens-mediated transformation. Three T lines (named E1, E3 and E4) were crossed with MM and then selfed to produce T families. All the T plants in homozygous state dnd1/dnd1, showed reduced PM symptoms compared to the heterozygous (DND1/dnd1) and wild type (DND1/DND1) ones. Two full knock-out (KO) mutant events (E1 and E4) encoding truncated DND1 proteins, exhibited clear dwarfness and auto-necrosis phenotypes, while mutant event E3 harbouring deletions of 3 amino acids, showed normal growth in height with less auto-necrotic spots. Analysis of the 3D structures of both the reference and the mutant proteins revealed significant conformational alterations in the protein derived from E3, potentially impacting its function. A dnd1/dnd1 TF2 line (TV181848-9, E3) underwent whole-genome sequencing using Illumina technology, which confirmed the absence of off-target mutations in selected genomic areas. Additionally, no traces of the Cas9 gene were detected, indicating its elimination through segregation. Our findings confirm the role of DND1 as an S-gene in tomato because impairment of this gene leads to a notable reduction in susceptibility to O. neolycopersici. Moreover, we provide, for the first time, a dnd1 mutant allele (E3) that exhibits fitness advantages in comparison with previously reported dnd1 mutant alleles, indicating a possible way to breed with dnd1 mutants.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11316316PMC
http://dx.doi.org/10.1186/s12870-024-05428-3DOI Listing

Publication Analysis

Top Keywords

powdery mildew
12
dnd1
8
dnd1 mutant
8
mutant
5
crispr/cas9-based mutations
4
mutations dnd1
4
dnd1 gene
4
gene enhance
4
tomato
4
enhance tomato
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!