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1.
Plant Mol Biol ; 100(1-2): 59-71, 2019 May.
Article in English | MEDLINE | ID: mdl-30796712

ABSTRACT

KEY MESSAGE: RNAi mediated silencing of pectin degrading enzyme of R. solani gives a high level of resistance against sheath blight disease of rice. Rice sheath blight disease caused by Rhizoctonia solani Kuhn (telemorph; Thanatephorus cucumeris) is one of the most devastating fungal diseases which cause severe loss to rice grain production. In the absence of resistant cultivars, the disease is currently managed through fungicides which add to environmental pollution. To explore the potential of utilizing RNA interference (RNAi)-mediated resistance against sheath blight disease, we identified genes encoding proteins and enzymes involved in the RNAi pathway in this fungal pathogen. The RNAi target genes were deciphered by RNAseq analysis of a highly virulent strain of the R. solani grown in pectin medium. Additionally, pectin metabolism associated genes of R. solani were analyzed through transcriptome sequencing of infected rice tissues obtained from six diverse rice cultivars. One of the key candidate gene AG1IA_04727 encoding polygalacturonase (PG), which was observed to be significantly upregulated during infection, was targeted through RNAi to develop disease resistance. Stable expression of PG-RNAi construct in rice showed efficient silencing of AG1IA_04727 and suppression of sheath blight disease. This study highlights important information about the existence of RNAi machinery and key genes of R. solani which can be targeted through RNAi to develop pathogen-derived resistance, thus opening an alternative strategy for developing sheath blight-resistant rice cultivars.


Subject(s)
Disease Resistance/genetics , Oryza/genetics , Oryza/microbiology , Pectins/pharmacology , Plant Diseases/microbiology , RNA Interference , Rhizoctonia/genetics , Transcriptome/genetics , Disease Progression , Gene Expression Regulation, Plant/drug effects , Genes, Plant , Plant Diseases/genetics , Polygalacturonase/genetics , Polygalacturonase/metabolism , RNA, Messenger/genetics , RNA, Messenger/metabolism , Rhizoctonia/drug effects , Sequence Analysis, RNA , Transformation, Genetic
2.
Virus Genes ; 44(3): 482-7, 2012 Jun.
Article in English | MEDLINE | ID: mdl-22234819

ABSTRACT

Rice tungro disease, one of the major constraints to rice production in South and Southeast Asia, is caused by a combination of two viruses: Rice tungro spherical virus (RTSV) and Rice tungro bacilliform virus (RTBV). The present study was undertaken to determine the genetic variation of RTSV population present in tungro endemic states of Indian subcontinent. Phylogenetic analysis based on coat protein sequences showed distinct divergence of Indian RTSV isolates into two groups; one consisted isolates from Hyderabad (Andhra Pradesh), Cuttack (Orissa), and Puducherry and another from West Bengal, Coimbatore (Tamil Nadu), and Kanyakumari (Tamil Nadu). The results obtained from phylogenetic study were further supported with the SNPs (single nucleotide polymorphism), INDELs (insertion and deletion) and evolutionary distance analysis. In addition, sequence difference count matrix revealed 2-68 nucleotides differences among all the Indian RTSV isolates taken in this study. However, at the protein level these differences were not significant as revealed by Ka/Ks ratio calculation. Sequence identity at nucleotide and amino acid level was 92-100% and 97-100%, respectively, among Indian isolates of RTSV. Understanding of the population structure of RTSV from tungro endemic regions of India would potentially provide insights into the molecular diversification of this virus.


Subject(s)
Capsid Proteins/genetics , Genetic Variation , Oryza/virology , Plant Diseases/virology , Waikavirus/classification , Waikavirus/isolation & purification , Cluster Analysis , Evolution, Molecular , INDEL Mutation , India , Molecular Sequence Data , Phylogeny , Polymorphism, Single Nucleotide , RNA, Viral/genetics , Sequence Analysis, DNA , Sequence Homology, Amino Acid , Sequence Homology, Nucleic Acid , Waikavirus/genetics
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