bioRxiv Science⌕ Search

Biology subjects

Dhobale, K. V.

Publications and source records attributed to Dhobale, K. V..

2 recordsLinked to original sources

Hairpin-RNA Spray Confers Resistance to Mungbean Yellow Mosaic India Virus in Mungbean

The prevalence of Begomovirus diseases poses a significant threat to legume crops, necessitating the exploration of innovative control measures. This investigation explores the utilization of dsRNA molecules to initiate RNA interference (RNAi) targeting begomovirus, particularly focusing on Mungbean yellow mosaic India virus (MYMIV) and its potential threat to mungbean crops. Given the lack of genetic resistance in commercially available mungbean varieties, the study endeavors to employ RNAi as a strategic method for the effective control of MYMIV. The approach involves the preparation of vectors for the transient expression of three dsRNA targeting multiple overlapping ORFs of MYMIV DNA A through agroinoculation, and the selection of a highly efficient construct for dsRNA expression in bacteria, enabling topical application to mungbean plants in growth chamber experiments. Agroinoculation assays demonstrate effective resistance against MYMIV, as confirmed by reduced symptom severity, limited virus accumulation, and the presence of viral mRNAs. The stability of the prepared dsRNA against nucleases is confirmed, showcasing its ability to enter plant cells, move to non treated trifoliate leaves, and form siRNA when sprayed onto mungbean leaves, as validated by qRT-PCR and northern blotting. Varied combinations of the timing of dsRNA spray and virus infection reveal differential resistance against the virus. Notably, spraying two days before or on the same day as virus exposure emerges as the most suitable time to achieve optimal resistance against virus infection. In light of these findings, the topical application of dsRNAs stands out as a promising and effective strategy for MYMIV control in mungbean crops.

plant biology↗

Identification of Begomovirus Genomic Components and Stress-specific Metabolic Markers in Mungbean Leaf Apoplast

Plant viruses exert control over the host metabolism to enhance their survival, but the specific sites where altered metabolites take effect remain enigmatic. This study focuses on the apoplastic region of symptomatic mungbean leaves infected with mungbean yellow mosaic India virus (MYMIV) to gain new insights into metabolite changes during infection. Leveraging NMR-based metabolome fingerprinting, we identified several stress-associated metabolites. Notably, proline and 2-Hydroxybutyrate were found to be up-regulated in the apoplast region, while down-regulated in the cytosol. Additionally, aspartate was found to be upregulated in the cytosolic region but absent in the apoplast. Importantly, our molecular analysis of the apoplast suggests the presence of MYMIV genomic components. Moreover, we characterized two distinct populations of extracellular vesicles (EVs) using ultracentrifugation, transmission electron microscopy, dynamic light scattering, and fluorometric assays. The data revealed alterations in the size and count of EVs, suggesting their potential role in facilitating the transport of viral components for long-distance cell-to-cell movement during infection. These findings provide valuable insights into the apoplasts role and the significance of EVs in MYMIV infection, contributing to a better understanding of virus-host interactions and potentially informing new virus defense strategies.

plant biology↗