SD
Sandip Das
Also known as: Sandip
University of Delhi, Max-Planck-Campus Tubingen, Jamia Hamdard
Employment
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University of Delhi Assistant/Associate Professor/Professor2010 - Present
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Max-Planck-Campus Tubingen Post-doctoral fellow2002 - 2004
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Jamia Hamdard lecturer/Assistant Professor1999 - 2010
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Cornell University Post-doctoral1999 - 1999
Education
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Jamia Hamdard Ph.D1993 - 1998
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University of Delhi M.Phil1992 - 1993
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University of Delhi M.Sc1990 - 1992
Projects & Funding
Projects & funding information is unavailable.
Publications (60)
- A Natural Antisense Long Non-Coding RNA, NATSAUR61, Acts as a Regulator of Tandemly Arrayed Genes of SAUR63 Sub-Clade and Controls Filament Elongation in Arabidopsis thaliana Save
- Head-to-head organized segmental paralogs AtOFP2 and AtOFP17 exhibit differential, spatio-temporal partitioning of function, and negative regulation of multiple developmental traits including seed-yield and root architecture Save
- Understanding Intricacies of Stamen Development Pathways Holds Key to Trait Manipulation for Hybrid Seed Production Save
- Complex Interplay of Tandem, Segmental, Whole Genome Duplication, and Re-organization Drives Expansion of SAUR Gene Family in Brassicaceae Save
- Sustainable Crop Production Save
- AtMYB42 and AtMYB85 Regulate Secondary Cell Wall Development and Lignin Level Possibly Through a Feedback Mechanism Save
- Differential Expression Pattern of Brassica juncea MIR160 Paralogs and Homeologs and In Silico Analysis of Brassicaceae Promoters Uncover Evolutionary Distinctness of MIR160a Save
- Comparative Functional Characterization of nst1, nst2, and nst3 in Arabidopsis thaliana Uncovers Previously Unknown Functions in Diverse Developmental Pathways Beyond Secondary Wall Formation Save
- Identification and comparative genomics of OVATE family members from Gramineae uncovers sequence and structural diversity, evolutionary trends, and insights into functional features Save
- The non-canonically organized members of MIR395 gene family in Brassica juncea are associated with developmentally regulated, sulfate-stress responsive bidirectional promoters that exhibit orientation-dependent differential transcriptional activity Save