SB
Subhajit Basu
University of Petroleum and Energy Studies, Max Planck Institute for Marine Microbiology, Goa University, Bangalore University, Hebrew University of Jerusalem
About
Environmental Microbiology, Microbial Biogeochemistry
Employment
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University of Petroleum and Energy Studies Senior Associate Professor2026 - Present
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University of Petroleum and Energy Studies Associate Professor2024 - 2026
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University of Petroleum and Energy Studies Assistant Professor2022 - 2024
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Max Planck Institute for Marine Microbiology Scientist2020 - 2022
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Hebrew University of Jerusalem Post Doctoral Fellow2014 - 2020
Education
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Goa University PhD Microbiology2007 - 2014
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Goa University Advanced Post Gradutae Diploma in Marine Microbiology and Technology2006 - 2007
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Bangalore University MSc Microbiology2002 - 2004
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Bangalore University BSc Microbiology, Chemistry, Botany1998 - 2001
Projects & Funding
Projects & funding information is unavailable.
Publications (22)
- Potential efficacy of repurposed drugs for treating drug-resistant visceral leishmaniasis Save
- Culturable rhizospheric microbiota of Lactuca sativa cultivars during nutrient-film farming reveals potential biocontrol and plant-growth promoting traits against commonly infesting fungal pathogens Save
- Comparative assessment of microbial arsenite oxidation: Mechanisms, oxidation rates, challenges, and bioremediation potentials Save
- Insights into drug resistance in Leishmania: Mechanisms, therapeutics, and clinical case studies Save
- Rhizosphere Microbiome Dynamics in Hydroponics: Core Taxa, Fungal Pathogen Infestations and Probiotic‐Based Management Save
- Geochemistry and Bioremediation Implications of Indigenous Arsenite-Oxidizing Bacteria from Arsenic-Contaminated Aquifers of the Upper Ganga Plain Save
- Evaluation of Immunopharmacological efficacy of live Leishmania donovani overexpressing Ld_ζ1domain for protection against experimental human visceral Leishmaniasis. Save
- Costs of Dust Collection by Trichodesmium: Effect on Buoyancy and Toxic Metal Release Save
- Co‐acquisition of mineral‐bound iron and phosphorus by natural Trichodesmium colonies Save
- Reactive oxygen species affect the potential for mineralization processes in permeable intertidal flats Save