PS
S Pramod
Also known as: Pramod Sivan
KTH Royal Institute of Technology, Umeå Plant Science Centre, Sardar Patel University, Mahatma Gandhi University, Uka Tarsadia University
Employment
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KTH Royal Institute of Technology Researcher2021 - Present
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Umeå Plant Science Centre Researcher2020 - 2021
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Uka Tarsadia University Assistant Professor2019 - 2019
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Umeå Plant Science Centre EMBO visiting researcher2017 - 2017
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Rubber Research Institute of India SERB-Young Scientist2016 - 2019
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Maharaja Sayajirao University of Baroda Post-doctoral Fellow (UGC-DSKPDF)2013 - 2016
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Central University of Kerala Guest Faculty2013 - 2014
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Directorate of Medicinal and Aromatic Plants Research Senior Research Fellow2011 - 2012
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Sardar Patel University Project Fellow (UGC-MRP)2008 - 2011
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Rubber Research Institute of India Research trainee2007 - 2008
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KTH Royal Institute of Technology
Education
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Sardar Patel University Ph D2008 - 2012
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Sardar Patel University M Sc. Botany2005 - 2007
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Mahatma Gandhi University B. Sc. Botany2001 - 2004
Projects & Funding
Projects & funding information is unavailable.
Publications (66)
- Disentangling Pectin and Cellulose Nanostructures in Synthetic Plant Cell Walls with Small-Angle Neutron Scattering Save
- Tropism dynamics in plant movement: insights into the mechanism of proprioception sensing in wood architecture and stem posture control in trees Save
- Wood-specific modification of glucuronoxylan can enhance growth in Populus Save
- Arabinoxylan-gluten hydrogels with tunable rheological properties via enzymatic oxidation and regeneration Save
- Glucuronoyl Esterase Expressed in Aspen Xylem Affects γ‐Ester Linkages Between Lignin and Glucuronoxylan Reducing Recalcitrance and Accelerating Growth Save
- Xylan modifications in Populus that lead to increased growth Save
- High-resolution imaging of the physical and chemical properties of Populus wood using SilviScan™ and near-infrared spectroscopy Save
- Modification of xylan in secondary walls alters cell wall biosynthesis and wood formation programs and improves saccharification Save
- Carbohydrate-binding domain CBM63 of microbial expansin-like BsEXLX1 facilitates the adsorption of expansin-related proteins to hemicelluloses in plant secondary cell walls Save
- Pattern of substitution affects the extractability and enzymatic deconstruction of xylan from Eucalyptus wood Save