Advancing RNAi-Based Strategies Against Downy Mildews: Insights Into dsRNA Uptake and Gene Silencing
Gol, D.; Okechukwu, E. C.; Unal, G.; Webb, A.; Wood, T.; Hong, Y.; Sherif, S.; Wacker, T.; Studholme, D. J.; McDowell, J.; Tor, M.
Show abstract
Downy mildew (DMs) dieases are caused by destructive obligate pathogens with limited control options, posing a significant threat to global agriculture. RNA interference (RNAi) has emerged as a promising, environmentally sustainable strategy for disease management. In this study, we evaluated the efficacy of dsRNA-mediated RNAi in suppressing key biological functions in DM pathogens of Arabidopsis thaliana, pea and lettuce DM pathogens, Hyaloperonospora arabidopsidis (Hpa), Peronospora viciae f. sp. pisi (Pvp) and Bremia lactucae (Bl), respectively. We specifically targeted the cellulose synthase 3 (CesA3) and the beta tubulin (BTUB) genes. Silencing CesA3 impaired spore germination and infection across multiple species, while BTUB silencing reinforced the potential of dsRNA-mediated inhibition. Reduction in gene expression levels correlated well with the sporulation assays confirming the effectiveness of dsRNA-mediated gene silencing. We used dsRNAs that were chemically synthesized, in vitro transcribed (IVT) or produced in E. coli. We found that the length and concentration of these dsRNAs significantly affected uptake efficiency, spore germination, and sporulation, with higher concentrations enhancing inhibitory effects. Confocal microscopy using Cy-5-labelled short-synthesized dsRNA (SS-dsRNA) provided direct evidence of spore uptake, confirming the potential of SS-dsRNA for pathogen control. However, species-specific sequence variations influenced dsRNA efficacy, underscoring the importance of target sequence design. Multiplexed RNAi impacted silencing synergisticly, further reducing germination and sporulation in Hpa. Additionally, we demonstrated that SS-dsRNA-mediated gene silencing is sustained over time, with a significant reduction in gene expression level at 4, 7, 10 and 11dpi. This indicates the durability and efficacy of this approach. Taken together, these findings demonstrate the potential of dsRNA-mediated gene silencing as a precision tool for managing DM pathogens.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Defence recognition of a stripe rust fungal effector is uncoupled from disease outcomes in wheat 94%
- Comparative transcriptomic analysis of Zymoseptoria tritici reveals interaction-specific gene expression patterns during susceptible, resistant, and non-host interactions 94%
- Optimizing the PBS1 Decoy System to Confer Resistance to Potyvirus Infection in Arabidopsis and Soybean 93%
Similar papers in this journal
- RNA-spray-mediated silencing of Fusarium graminearum AGO and DCL genes improve barley disease resistance 97%
- Exogenous application of dsRNA for the control of viruses in cucurbits 95%
- Expression of a fungal lectin in Arabidopsis enhances plant growth and resistance towards microbial pathogens and plant-parasitic nematode 94%
Similar papers in this journal
- Spray-Induced Gene Silencing Identifies Pathogen Processes Contributing To Powdery Mildew Proliferation 97%
- Comparative analysis of RNA interference and pattern-triggered immunity induced by dsRNA reveals different efficiencies in the antiviral response to Potato virus X 94%
- Identification of Avramr1 from Phytophthora infestans using long read and cDNA pathogen-enrichment sequencing (PenSeq) 94%
Similar papers in this journal
- Broad-scale phenotyping in Arabidopsis reveals varied involvement of RNA interference across diverse plant-microbe interactions 95%
- A highly efficient protocol for transforming Cuscuta reflexa based on artificially induced infection sites 93%
- Simple and efficient heterologous expression of necrosis-inducing effectors using the model plant Nicotiana benthamiana 93%
Similar papers in this journal
- A High-throughput Screening Method to Identify Proteins Involved in Unfolded Protein Response Signaling in Plants 92%
- Combined fluorescent seed selection and multiplex CRISPR/Cas9 assembly for fast generation of multiple Arabidopsis mutants 91%
- Colour-analyzer: A new dual colour model-based imaging tool to quantify plant disease 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.