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Life Support & Biosphere Science : International Journal of Earth Space|October 26, 2001
Feasibility of substituting sodium for potassium in crop plants for advanced life support systemsG V Subbarao, R M Wheeler, G W StutteJournal of Plant Nutrition|September 7, 2001
How far can sodium substitute for potassium in red beet?G V Subbarao, R M Wheeler, G W Stutte, et al.Journal of Plant Nutrition|October 12, 2001
Low potassium enhances sodium uptake in red-beet under moderate saline conditionsG V Subbarao, R M Wheeler, G W Stutte, et al.Journal of Plant Physiology|May 30, 2002
Glycine betaine accumulation, ionic and water relations of red-beet at contrasting levels of sodium supplyG V Subbarao, R M Wheeler, L H Levine, et al.Animal : an International Journal of Animal Bioscience|June 7, 2013
Potential for biological nitrification inhibition to reduce nitrification and N2O emissions in pasture crop-livestock systemsG V Subbarao, I M Rao, K Nakahara, et al.Journal of Molecular Biology|January 27, 1999
Refined crystal structures of native human angiogenin and two active site variants: implications for the unique functional properties of an enzyme involved in neovascularisation during tumour growthD D Leonidas, R Shapiro, S C Allen, et al.Annals of Botany|November 3, 2012
A paradigm shift towards low-nitrifying production systems: the role of biological nitrification inhibition (BNI)G V Subbarao, K L Sahrawat, K Nakahara, et al.Proceedings of the National Academy of Sciences of the United States of America|October 7, 2009
Evidence for biological nitrification inhibition in Brachiaria pasturesG V Subbarao, K Nakahara, M P Hurtado, et al.Plant Science : an International Journal of Experimental Plant Biology|July 19, 2017
Genetic mitigation strategies to tackle agricultural GHG emissions: The case for biological nitrification inhibition technologyG V Subbarao, J Arango, K Masahiro, et al.Pageof 1