VS
Vikas Srivastava
John Innes Centre, Central University of Jammu, University of Allahabad, University of Lucknow, National Institute of Plant Genome Research
Employment
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John Innes Centre Royal Society Newton International Fellow2022 - Present
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Central University of Jammu Assistant Professor2016 - Present
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National Institute of Plant Genome Research CSIR-Research Associate2015 - 2016
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National Institute of Plant Genome Research NIPGR-Post Doc Fellow (RA-III)2014 - 2015
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National Institute of Plant Genome Research Project-SRF2013 - 2014
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Central Institute of Medicinal and Aromatic Plants CSIR-SRF2010 - 2013
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Central Institute of Medicinal and Aromatic Plants CSIR-JRF2008 - 2010
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Central Institute of Medicinal and Aromatic Plants CSIR-RI2007 - 2008
Education
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University of Allahabad MSc2004 - 2006
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University of Allahabad BSc2001 - 2004
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University of Lucknow Studies on Hairy Roots as Bioreactors for Normal and Elicited Biotransformation of Exogenous Molecules? - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (39)
- Melatonin-mediated regulatory networks in plant heavy metal tolerance: from multi-omics and epigenetics to nanotechnology and genome engineering Save
- Digital dimension of plant science research: A bird’s eye view of AI integration Save
- Waterlogging Mitigation in Plants Through Exogenous Application of Chemical Agents Save
- Phytomicrobiome-based approaches for sustainable crop performance and environmental resilience Save
- Unlocking saponin biosynthesis in soapwort Save
- Plant Growth Promoting Rhizobacteria (PGPR): Reports on Their Colonization, Beneficial Activities, and Use as Bioinoculant Save
- Signal crosstalk of phytomelatonin during salinity stress tolerance in plants Save
- Metabolic engineering in hairy roots: An outlook on production of plant secondary metabolites Save
- The nuclear effector ArPEC25 from the necrotrophic fungus Ascochyta rabiei targets the chickpea transcription factor CaβLIM1a and negatively modulates lignin biosynthesis, increasing host susceptibility Save
- Hydrogen sulphide‐mediated alleviation and its interplay with other signalling molecules during temperature stress Save