Individual Information
 
 

Dhananjay K. Pandey

School of Biotechnology, Gautam Buddha University

Web Page: https://sites.google.com/site/dhananjaypandey38/
Research Interests
Plant Molecular Biology
Selected Publications
Books
1. Pandey Dhananjay K. and Chaudhary Bhupendra (2015) Genes and Trans-Factors Underlying Embryogenic Transition in Plant Soma-Cells; Advances in the Understanding of Biological Sciences Using Next Generation Sequencing (NGS) Approaches; Springer International Publishing, pp155-178.
Journal Articles
1. Chaudhary Bhupendra, Singh Nagendra and Pandey Dhananjay K. (2017), Bioengineering of crop plants for improved tetrahydrofolate production. Bioengineered; doi:10.1080/21655979.2017.1373537
2. Pandey Dhananjay K. and Chaudhary Bhupendra (2017), Evolutionary expansion and structural functionalism of the ancient family of profilin proteins. Gene, 626, 70-86; doi: 10.1016/j.gene.2017.05.024
3. Pandey Dhananjay K., Kumar Atul, Singh Nagendra, Rathore J S and Chaudhary Bhupendra (2017). Recombinant overexpression of dihydroneopterin aldolase catalyst potentially regulates folate-biofortification. J Basic Microbiol, doi: 10.1002/jobm.201600721
4. Pandey Dhananjay K. and Chaudhary Bhupendra (2016) A Botanist’s Cognitive View on Plant Growth: Cross-Talk between Developmental and Sensitivity Networks. American Journal of Plant Sciences 7, 2307-2322. doi:10.4236/ajps.2016.715203.
5. Pandey Dhananjay K. and Chaudhary Bhupendra (2016) Domestication-driven Gossypium profilin (GhPRF1) gene transduces early flowering phenotype in tobacco by spatial alteration of apical/floral-meristem related gene expression. BMC Plant Biology 16:112, 1-21. doi: 10.1186/s12870-016-0798-0
6. Pandey Dhananjay K. and Chaudhary Bhupendra (2014) Role of Plant Somatic Embryogenesis Receptor Kinases (SERKs) in Cell-to-Embryo Transitional Activity: Key at Novel Assorted Structural Subunits. American Journal of Plant Sciences 5,3177-3193. doi:10.4236/ajps.2014.521334
7. Pandey Dhananjay K. and Chaudhary Bhupendra (2014) Oxidative Stress Responsive SERK1 Gene Directs the Progression of Somatic Embryogenesis in Cotton (Gossypium hirsutum L. cv. Coker 310). American Journal of Plant Sciences 5,80-102. doi:10.4236/ajps.2014.51012.
8. Pandey Dhananjay K., Singh Arvind K., and Chaudhary Bhupendra (2012) Boron-Mediated Plant Somatic Embryogenesis: A Provocative Model. Journal of Botany, 2012,1-9 doi:10.1155/2012/375829.
9. Patent: Methods of producing early flowering and enhanced agronomic traits in plants, Application No. 201611036458 A, International classification, A01H1/06
10. Patent: Method for enhanced tetrahydrofolate production by deregulation of allosteric inhibition of dihydroneopterin aldolase (DHNA), Application No. 201711000033 A, International classification C12N1/21
11. Patent: Bioengineering of Cotton for Increased Floral Inception and Fiber Initiation, Application No. 201711026325 A, International classification C12N9/42