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Planta|January 9, 2009
Insight into the salt tolerance factors of a wild halophytic rice, Porteresia coarctata: a physiological and proteomic approachSonali Sengupta, Arun Lahiri MajumderFunctional & Integrative Genomics|July 27, 2018
Transcriptome analysis of grapevine under salinity and identification of key genes responsible for salt tolerancePriyanka Das, Arun Lahiri MajumderPlant, Cell & Environment|October 22, 2009
Porteresia coarctata (Roxb.) Tateoka, a wild rice: a potential model for studying salt-stress biology in riceSonali Sengupta, Arun Lahiri MajumderFrontiers in Plant Science|June 7, 2014
Physiological and genomic basis of mechanical-functional trade-off in plant vasculatureSonali Sengupta, Arun Lahiri MajumderProtoplasma|June 19, 2010
Salt-induced abnormalities on root tip mitotic cells of Allium cepa: prevention by inositol pretreatmentJolly Chatterjee, Arun Lahiri MajumderFrontiers in Genetics|August 15, 2020
Genetic Manipulation for Improved Nutritional Quality in RicePriyanka Das, Sanghamitra Adak, Arun Lahiri MajumderPlant, Cell & Environment|July 23, 2008
Inositol methyl tranferase from a halophytic wild rice, Porteresia coarctata Roxb. (Tateoka): regulation of pinitol synthesis under abiotic stressSonali Sengupta, Barunava Patra, Sudipta Ray, et al.Protoplasma|June 5, 2010
Enhanced salt tolerance of transgenic tobacco plants by co-expression of PcINO1 and McIMT1 is accompanied by increased level of myo-inositol and methylated inositolBarunava Patra, Sudipta Ray, Andreas Richter, et al.Planta|January 20, 2004
sll1722, an unassigned open reading frame of Synechocystis PCC 6803, codes for L-myo-inositol 1-phosphate synthaseAnirban Chatterjee, Manoj Majee, Shilpi Ghosh, et al.FEBS Letters|June 8, 2012
Galactinol synthase across evolutionary diverse taxa: functional preference for higher plants?Sonali Sengupta, Sritama Mukherjee, Sabiha Parween, et al.Pageof 3