MANEESH LINGWAN
Also known as: Lingwan M
Donald Danforth Plant Science Center, Indian Institute of Science Education and Research Bhopal, Indian Institute of Technology Mandi, Govind Ballabh Pant University of Agriculture and Technology
About
Passionate to develop a holistic understanding to engineer plant and microbial systems for a sustainable future. I have done my PhD at the Indian Institute of Technology Mandi, India. Currently, I am a Research Scientist at the Donald Danforth Plant Science Center in St. Louis, USA. I am building my expertise in the exciting areas of metabolic systems biology. My strengths include:
-Plant biochemistry and lipid metabolism
-Specialized metabolism to phytomedicine
-Analytical platforms (GC-MS, LC-MS/MS, and NMR)
-Decoding plant-microbial crosstalk
-Stable isotope biochemistry (13C, 15N mapping in metabolic networks)
-Systems analysis, bioinformatics tools and interpretation
-Entrepreneurship
In the future, I envision myself working closely with world-class scientists and contributing to the community in discovering fundamental aspects. I am enthusiastic about interdisciplinary sciences and engineering for addressing global challenges. At this point, I am open to working on challenging projects and ready to explore the wide range of exciting questions and -omics platforms.
Employment
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Donald Danforth Plant Science Center Research Scientist I2025 - Present
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Donald Danforth Plant Science Center Postdoctoral Associate2022 - 2024
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Indian Institute of Science Education and Research Bhopal Post-Doctoral Fellow2021 - 2022
Education
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Indian Institute of Technology Mandi PhD2016 - 2021
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Govind Ballabh Pant University of Agriculture and Technology M.Sc.2014 - 2016
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Hemwati Nandan Bahuguna Garhwal University B.Sc.2011 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (42)
- B-Boxing beats the heat for lilies Save
- Wavelength induced cultivar specific enrichment of essential amino acids and phenolics in Amaranthus tricolor Save
- No more fishes: Plants as a bio-factory for omega-3 fatty acid Save
- PII controls ACCase assembly to co-regulate oil and protein metabolism in plants Save
- Disruption of acyl-acyl carrier protein (acyl-ACP) synthetase in cyanobacteria impairs lipid remodeling as revealed by acyl-ACP measurements Save
- Quantitative Profiling of Metabolites, Sugars, and Lipids in Pollen Tubes by Mass Spectrometry Save
- Technological Advances in Studying Plant Environment Interactions Save
- A One Health Framework for Proteomics Across the Tree of Life to Advance Food Security, Animal Health, and Ecosystem Resilience Save
- Proximity-based proteomics reveals subcellular targeting sequence in Cyanobacteria Save
- Persistent fatty acid catabolism during plant oil synthesis Save