Multilevel Analysis of Primary Metabolism Provides New Insights into the Role of Potassium Nutrition for Glycolysis and Nitrogen Assimilation in Arabidopsis Roots
Open Access
- 3 April 2009
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 150 (2) , 772-785
- https://doi.org/10.1104/pp.108.133629
Abstract
Potassium (K) is required in large quantities by growing crops, but faced with high fertilizer prices, farmers often neglect K application in favor of nitrogen and phosphorus. As a result, large areas of farmland are now depleted of K. K deficiency affects the metabolite content of crops with negative consequences for nutritional quality, mechanical stability, and pathogen/pest resistance. Known functions of K in solute transport, protein synthesis, and enzyme activation point to a close relationship between K and metabolism, but it is unclear which of these are the most critical ones and should be targeted in biotechnological efforts to improve K usage efficiency. To identify metabolic targets and signaling components of K stress, we adopted a multilevel approach combining transcript profiles with enzyme activities and metabolite profiles of Arabidopsis (Arabidopsis thaliana) plants subjected to low K and K resupply. Roots and shoots were analyzed separately. Our results show that regulation of enzymes at the level of transcripts and proteins is likely to play an important role in plant adaptation to K deficiency by (1) maintaining carbon flux into amino acids and proteins, (2) decreasing negative metabolic charge, and (3) increasing the nitrogen-carbon ratio in amino acids. However, changes in transcripts and enzyme activities do not explain the strong and reversible depletion of pyruvate and accumulation of sugars observed in the roots of low-K plants. We propose that the primary cause of metabolic disorders in low-K plants resides in the direct inhibition of pyruvate kinase activity by low cytoplasmic K in root cells.Keywords
This publication has 79 references indexed in Scilit:
- Oxidative Pentose Phosphate Pathway-Dependent Sugar Sensing as a Mechanism for Regulation of Root Ion Transporters by PhotosynthesisPlant Physiology, 2008
- Arabidopsis NAD-Malic Enzyme Functions As a Homodimer and Heterodimer and Has a Major Impact on Nocturnal MetabolismPlant Physiology, 2008
- Variation of Enzyme Activities and Metabolite Levels in 24 Arabidopsis Accessions Growing in Carbon-Limited ConditionsPlant Physiology, 2006
- Extracellular Ca2+ Ameliorates NaCl-Induced K+ Loss from Arabidopsis Root and Leaf Cells by Controlling Plasma Membrane K+-Permeable ChannelsPlant Physiology, 2006
- A gene expression map of Arabidopsis thaliana developmentNature Genetics, 2005
- Role of the Arabidopsis Glucose Sensor HXK1 in Nutrient, Light, and Hormonal SignalingScience, 2003
- NADP‐malic enzyme from plants: a ubiquitous enzyme involved in different metabolic pathwaysFEBS Letters, 2001
- Physiological changes associated with potassium deficiency in cottonJournal of Plant Nutrition, 1999
- Potassium and nitrogen effects on carbohydrate and protein metabolism in alfalfa rootsJournal of Plant Nutrition, 1997
- POTASSIUM IN PLANT METABOLISM.: III. SOME CARBOHYDRATE CHANGES IN THE WHEAT SEEDLING ASSOCIATED WITH VARYING RATES OF POTASSIUM SUPPLYCanadian Journal of Plant Science, 1960