Browsing by Author Singh, Kunal

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Showing results 1 to 10 of 10
Issue DateTitleAuthor(s)
2014Comparative structural modeling of six old yellow enzymes (OYEs) from the necrotrophic fungus Ascochyta rabiei: Insight into novel OYE classes with differences in cofactor binding, organization of active site residues and stereopreferencesNizam, Shadab; Gazara, Rajesh Kumar; Verma, Sandhya; Singh, Kunal; Verma, Praveen K.
2012Comparative transcriptome analysis of the necrotrophic fungus Ascochyta rabiei during oxidative stress: insight for fungal survival in the host plantSingh, Kunal; Nizam, Shadab; Sinha, Manisha; Verma, Praveen K.
2012Efficacy of E. officinalis on the cariogenic properties of Streptococcus mutans: a novel and alternative approach to suppress quorum-sensing mechanismHasan, Sadaf; Danishuddin, Mohd; Adil, Mohd; Singh, Kunal; Verma, Praveen K.; Khan, Asad U.
2014Eugenol-induced suppression of biofilm-forming genes in Streptococcus mutans: An approach to inhibit biofilmsAdil, Mohd; Singh, Kunal; Verma, Praveen K.; Khan, Asad U.
2010Expression of the fluorescent proteins DsRed and EGFP to visualize early events of colonization of the chickpea blight fungus Ascochyta rabieiNizam, Shadab; Singh, Kunal; Verma, Praveen K.
2012High reliability transformation of the wheat pathogen Bipolaris sorokiniana using Agrobacterium tumefaciensNizam, Shadab; Verma, Sandhya; Singh, Kunal; Aggarwal, Rashmi; Srivastava, Krishna Dutt; Verma, Praveen K.
2014Inhibition of major virulence pathways of Streptococcus mutans by Quercitrin and Deoxynojirimycin: a synergistic approach of infection controlHasan, Sadaf; Singh, Kunal; Danisuddin, Mohd; Verma, Praveen K.; Khan, Asad U.
2021Modulation of fungal virulence through CRZ1 regulated F-BAR-dependent actin remodeling and endocytosis in chickpea infecting phytopathogen Ascochyta rabieiSinha, Manisha; Shree, Ankita; Singh, Kunal; Kumar, Kamal; Singh, Shreenivas Kumar; Kumar, Vimlesh; Verma, Praveen K.
2023The nuclear effector ArPEC25 from the necrotrophic fungus Ascochyta rabiei targets the chickpea transcription factor CaβLIM1a and negatively modulates lignin biosynthesis, increasing host susceptibilitySingh, Shreenivas Kumar; Shree, Ankita; Verma, Sandhya; Singh, Kunal; Kumar, Kamal; Srivastava, Vikas; Singh, Ritu; Saxena, Samiksha; Singh, Agam Prasad; Pandey, Ashutosh; Verma, Praveen K.
2020Transcript profiling reveals potential regulators for oxidative stress response of a necrotrophic chickpea pathogen Ascochyta rabieiMaurya, Ranjeet; Singh, Yeshveer; Sinha, Manisha; Singh, Kunal; Mishra, Pallavi; Singh, Shreenivas Kumar; Verma, Sandhya; Prabha, Kanchan; Kumar, Kamal; Verma, Praveen K.