Please use this identifier to cite or link to this item: http://223.31.159.10:8080/jspui/handle/123456789/1446
Title: Evolution of pathogenicity-associated genes in Rhizoctonia solani AG1-IA by genome duplication and transposon-mediated gene function alterations
Authors: Francis, Aleena
Ghosh, Srayan
Tyagi, Kriti
Prakasam, V.
Rani, Mamta
Singh, Nagendra Pratap
Pradhan, Amrita
Sundaram, R. M.
Priyanka, C.
Laha, G. S.
Kannan, C.
Prasad, M. S.
Chattopadhyay, Debasis
Jha, Gopaljee
Keywords: Fungal pathogenesis
Genome sequence
Neofunctionalization
Rhizoctonia solani
Sheath blight disease
Transposable elements
Whole-genome duplication
Issue Date: 2023
Publisher: BioMed Central Ltd
Citation: BMC Biology, 21: 15
Abstract: Background: Rhizoctonia solani is a polyphagous fungal pathogen that causes diseases in crops. The fungal strains are classified into anastomosis groups (AGs); however, genomic complexity, diversification into the AGs and the evolution of pathogenicity-associated genes remain poorly understood. Results: We report a recent whole-genome duplication and sequential segmental duplications in AG1-IA strains of R. solani. Transposable element (TE) clusters have caused loss of synteny in the duplicated blocks and introduced differential structural alterations in the functional domains of several pathogenicity-associated paralogous gene pairs. We demonstrate that the TE-mediated structural variations in a glycosyl hydrolase domain and a GMC oxidoreductase domain in two paralogous pairs affect the pathogenicity of R. solani. Furthermore, to investigate the association of TEs with the natural selection and evolution of pathogenicity, we sequenced the genomes of forty-two rice field isolates of R. solani AG1-IA. The genomic regions with high population mutation rates and with the lowest nucleotide diversity are enriched with TEs. Genetic diversity analysis predicted the genes that are most likely under diversifying and purifying selections. We present evidence that a smaller variant of a glucosamine phosphate N-acetyltransferase (GNAT) protein, predicted to be under purifying selection, and an LPMP_AA9 domain-containing protein, predicted to be under diversifying selection, are important for the successful pathogenesis of R. solani in rice as well as tomato. Conclusions: Our study has unravelled whole-genome duplication, TE-mediated neofunctionalization of genes and evolution of pathogenicity traits in R. solani AG1-IA. The pathogenicity-associated genes identified during the study can serve as novel targets for disease control.
Description: Accepted date: 23 January 2023
URI: https://bmcbiol.biomedcentral.com/articles/10.1186/s12915-023-01526-0
http://223.31.159.10:8080/jspui/handle/123456789/1446
ISSN: 1741-7007
Appears in Collections:Institutional Publications

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