RP
Raghavendra Paduvari
Manipal Academy of Higher Education, Manipal Institute of Technology, Mangalore University, Bhandarkars' Arts and Science College
About
I have secured my PhD from Department of Biotechnology, Manipal Institute of Technology, Manipal. My research area is applied microbiology with a focus on production of bacterial bioplastic polyhydroxyalkanoates. I have completed my M.Sc. in Biosciences from Mangalore University, Mangalagangothri and B.Sc. in Botany, Zoology and Chemistry from Bhandarkars’ Arts and Science College, Kundapura.
Employment
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Manipal Academy of Higher Education Junior Research Fellow (JRF)2019 - 2020
Education
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Manipal Institute of Technology Ph.D.2019 - 2025
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Mangalore University M.Sc. in Biosciences? - 2018
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Bhandarkars' Arts and Science College B.Sc. in Botany, Zoology & Chemistry (BZC)? - 2016
Projects & Funding
Projects & funding information is unavailable.
Publications (9)
- Sustainable Microbial Conversion of Glycerol to 1,2-Propanediol by Brucella oryzae: Advancing Bio-Based Chemical Synthesis Save
- A Novel Link Between Electron Transport Chain Modulation and mcl‐PHA Production in Pseudomonas aeruginosa 5300 Using Azide as a Modulator Save
- Advancements in genetic engineering for enhanced Polyhydroxyalkanoates (PHA) production: a comprehensive review of metabolic pathway manipulation and gene deletion strategies Save
- Sulphide and oleic acid synergism in accelerating mcl-PHA biopolymer production in Pseudomonas aeruginosa MCC 5300 by modulating electron transport system Save
- Dual-function strategy: simultaneous biopolymer production and lead biosorption by Bacillus paramycoides in single-batch fermentation process Save
- Uncovering the mysteries of bacterial cytochrome c oxidases: A review on structural and molecular insights for potential application Save
- Waste to value-added products: an innovative approach forsustainable production of microbial biopolymer (PHA) - emphasis on inexpensive carbon feedstock Save
- Valorization of cashew industry wastewater as a carbon and nutrient source for the microbial growth and production of the polyhydroxyalkanoates: A potential biopolymer by Bacillus species Save
- Biosynthesis of 3-hydroxydecanoate (3HD) and 3-hydroxydodecanoate (3HDd) in the polyhydroxyalkanoate copolymeric ester chain by Pseudomonas aeruginosa MCC 5300 using oleic acid as a carbon source Save