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Amino Acids|December 4, 2009
Polyamines and cellular metabolism in plants: transgenic approaches reveal different responses to diamine putrescine versus higher polyamines spermidine and spermineAutar K Mattoo, Subhash C Minocha, Rakesh Minocha, et al.Plant & Cell Physiology|April 12, 2013
Ornithine: the overlooked molecule in the regulation of polyamine metabolismRajtilak Majumdar, Lin Shao, Rakesh Minocha, et al.Amino Acids|September 10, 2013
Putrescine overproduction does not affect the catabolism of spermidine and spermine in poplar and ArabidopsisLin Shao, Pratiksha Bhatnagar, Rajtilak Majumdar, et al.Frontiers in Microbiology|March 13, 2015
Oligotyping reveals stronger relationship of organic soil bacterial community structure with N-amendments and soil chemistry in comparison to that of mineral soil at Harvard Forest, MA, USASwathi A Turlapati, Rakesh Minocha, Stephanie Long, et al.Tree Physiology|March 5, 2004
Physiological responses of wild type and putrescine-overproducing transgenic cells of poplar to variations in the form and concentration of nitrogen in the mediumRakesh Minocha, Jae Soon Lee, Stephanie Long, et al.Tree Physiology|June 28, 2015
Long-term trends of changes in pine and oak foliar nitrogen metabolism in response to chronic nitrogen amendments at Harvard Forest, MARakesh Minocha, Swathi A Turlapati, Stephanie Long, et al.BMC Plant Biology|January 17, 2015
Hessian fly larval feeding triggers enhanced polyamine levels in susceptible but not resistant wheatSubhashree Subramanyam, Nagesh Sardesai, Subhash C Minocha, et al.Plant Physiology and Biochemistry : PPB|June 17, 2010
The response of high and low polyamine-producing cell lines to aluminum and calcium stressSridev Mohapatra, Smita Cherry, Rakesh Minocha, et al.Frontiers in Plant Science|February 25, 2016
Glutamate, Ornithine, Arginine, Proline, and Polyamine Metabolic Interactions: The Pathway Is Regulated at the Post-Transcriptional LevelRajtilak Majumdar, Boubker Barchi, Swathi A Turlapati, et al.FEMS Microbiology Ecology|September 15, 2012
Chronic N-amended soils exhibit an altered bacterial community structure in Harvard Forest, MA, USASwathi A Turlapati, Rakesh Minocha, Premsai S Bhiravarasa, et al.Pageof 3