Rs_MEP1 is required for the pathogenesis of Rhizoctonia solani AG1-IA in plants

dc.contributor.authorPradhan, Amrita
dc.contributor.authorSahoo, Debashis
dc.contributor.authorBhati, Vikrant
dc.contributor.authorKumar, Rahul
dc.contributor.authorYadav, Rajni
dc.contributor.authorGhosh, Srayan
dc.contributor.authorPawar, Prashant Anupama-Mohan
dc.contributor.authorJha, Gopaljee
dc.date.accessioned2026-08-04T11:06:16Z
dc.date.issued2026
dc.descriptionAccepted date: January 19, 2026
dc.description.abstractRhizoctonia solani AGI-IA is a polyphagous necrotrophic fungal pathogen that causes sheath blight disease in rice. Efforts are being made to identify pathogenicity-associated genes in R. solani and modulate them to develop a disease control strategy. Here, we investigate the roles of some predicted pathogenicity-associated genes of R. solani that have previously been reported to be upregulated during infection in rice. The tobacco rattle virus-based host-induced gene silencing of the selected pathogenicity-associated genes revealed that silencing of Rs_MEP1, a zinc-containing Peptidase_M43 domain-metalloprotease, severely compromises R. solani infection in tomato. Moreover, double-stranded RNA-mediated silencing of Rs_MEP1 prevented R. solani infection in rice. The signal sequence trap assay indicated the secretory nature of Rs_MEP1, while the reporter assay suggested its localization in the plant apoplast. Notably, agrobacterium-mediated transient overexpression of Rs_MEP1 induces necrotic cell death responses in plants. We provide evidence that Rs_MEP1 interacts with GH19 family of rice chitinases and potentially modulates their functions. Overall, our study emphasizes that Rs_MEP1 facilitates R. solani in promoting necrotic responses and targets rice GH19 chitinases to impart disease susceptibility in plants.
dc.description.sponsorshipA.P. acknowledges SRF fellowship from University Grants Commission, Govt of India. G.J.acknowledges SR-NBACD award (HRD-20/3/2024-HRD-DBT) and project grants(BT/PR58439/BSA/33/550/2025 and BT/PR44291/AGIII/103/1349/2021) from DBT, Govt ofIndia, and CRG grant (CRG/2022/004092) from ANRF (SERB), Govt of India, for supporting research in his lab. The authors acknowledge K Vengadesan and Shivangi Tyagi, Regional Center for Biotechnology, Faridabad, for fruitful discussion. The assistance of NIPGR confocal facility and the central instrumentation facilities is acknowledged. The authors are also thankful to DBT-eLibrary Consortium (DeLCON) for providing access to e-resources. The work is partially supported by Swarna Jayanti Fellowship (SB/SJF/2020-21/01) and CRGgrant (CRG/2022/004092) from Anusandhan National Research Foundation (ANRF), Govt ofIndia, and a core research grant from BRIC-National Institute of Plant Genome Research(NIPGR), New Delhi.
dc.identifier.citationMolecular Plant-Microbe Interactions, (In Press)
dc.identifier.issn0894-0282
dc.identifier.issn1943-7706
dc.identifier.otherhttps://doi.org/10.1094/MPMI-01-26-0007-R
dc.identifier.urihttps://apsjournals.apsnet.org/doi/10.1094/MPMI-01-26-0007-R
dc.identifier.urihttps://ndkr-library.nipgr.ac.in/handle/123456789/1838
dc.language.isoen_US
dc.publisherThe American Phytopathological Society (APS)
dc.subjectCell wall degrading enzyme
dc.subjectChitinase
dc.subjectEffector
dc.subjectHIGS
dc.subjectMetalloproteases
dc.subjectNecrotroph
dc.subjectSheath blight disease
dc.titleRs_MEP1 is required for the pathogenesis of Rhizoctonia solani AG1-IA in plants
dc.typeArticle

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