Biologia plantarum 55:125-132, 2011 | DOI: 10.1007/s10535-011-0017-7
Glutathione in adaptation of Arabidopsis thaliana to cadmium stress
- 1 Department of Plant Physiology, Maria Curie-Skłodowska University, Lublin, Poland
The role of glutathione (GSH) in the adaptation of wild type Arabidopsis thaliana plants to Cd stress was investigated. The nutrient solution (control or containing 50 or 100 μM Cd) was supplemented with buthionine sulfoximine (BSO; 50, 100, 500 μM, to decrease the GSH content in plants) or GSH (50, 100, 500 μM, to increase its content in plants) in order to find how GSH content could regulate Cd stress responses. BSO application did not influence plant biomass, while exogenous GSH (especially 500 μM) reduced root biomass. BSO (500μM) in combination with Cd (100 μM) increased Cd toxicity on root growth (by over 50 %), most probably due to reduced GSH content and phytochelatin (PC) accumulation (by over 96 %). On the other hand, combination of exogenous GSH (500 μM) with Cd (100 μM) was also more toxic to plants than Cd alone despite a significant increase in GSH and PC accumulation (up to 2.7 fold in the roots). This fact could indicate that the natural content of endogenous GSH in wild type A. thaliana plants is sufficient for Cd-tolerance. A decrease in this GSH content led to decreased Cd-tolerance of the plants but an increase in GSH content did not enhance Cd-tolerance, and it showed even toxic effect on the plants.
Keywords: BSO; GSH labelling with monochlorobimane; phytochelatin
Received: March 12, 2009; Accepted: December 6, 2009; Published: March 1, 2011 Show citation
References
- Anderson, M.E.: Determination of glutathione and glutathione disulfides in biological samples. - Meth. Enzymol. 113: 548-555, 1985.
Go to original source... - Armstrong, J.S., Jones, D.P.: Glutathione depletion enforces the mitochondrial permeability transition and causes cell death in Bcl-2 overexpressing HL60 cells. - FASEB J. 16: 1263-1265, 2002.
Go to original source... - Belmonte, M.F., Ambrose, S.J., Ross, A.R.S., Abrams, S.R., Stasolla, C.: Improved development of microspore-derived embryo cultures of Brassica napus cv Topaz following changes in glutathione metabolism. - Physiol. Plant. 127: 690-700, 2006.
Go to original source... - Ben Ammar, W., Mediouni, C., Tray, B., Ghorbel, M.H., Jemal, F.: Glutathione and phytochelatin contents in tomato plants exposed to cadmium. - Biol. Plant. 52: 314-320, 2008.
Go to original source... - Cobbett, C.S., May, M.J., Howden, R., Rolls, B.: The glutathione-deficient, cadmium-sensitive mutant, cad2-1, of Arabidopsis thaliana is deficient in γ-glutamylcysteine synthetase. - Plant J. 16: 73-78, 1998.
Go to original source... - Cobbett, C.S, Meagher, R.B.: Arabidopsis and genetic potential for the phytoremediation of toxic elemental and organic pollutants. - In: Somerville, C.R., Meyerowitz, E.M. (ed.): The Arabidopsis Book. Pp. 1-22. American Society of Plant Biologists, Rockville 2002.
Go to original source... - Espunya, M.C., Díaz, M., Moreno-Romero, J., MartÍnez, M.C.: Modification of intracellular levels of glutathione-dependent formaldehyde dehydrogenase alters glutathione homeostasis and root development. - Plant Cell Environ. 29: 1002-1011, 2006.
Go to original source... - Fricker, M.D., May, M., Meyer, A.J., Sheard, N., White, N.S.: Measurement of glutathione levels in intact roots of Arabidopsis. - J. Microscopy 198: 162-173, 2000.
Go to original source... - Gussarsson, M., Asp, H., Adalsteinsson, S., Jensén, P.: Enhancement of cadmium effects on growth and nutrient composition of birch (Betula pendula) by buthionine sulphoximine (BSO). - J. exp. Bot. 47: 211-215, 1996.
Go to original source... - Howden, R., Cobbett, C.S.: Cadmium-sensitive mutants of Arabidopsis thaliana. - Plant Physiol. 99: 100-107, 1992.
Go to original source... - Howden, R., Goldsbrough, P.B., Andersen, C.R., Cobbett, C.S.: Cadmium-sensitive cad1 mutants of Arabidopsis thaliana are phytochelatin deficient. - Plant Physiol. 107: 1059-1066, 1995.
Go to original source... - Jamaï, A., Tommasini, R., Martinoia, E., Delrot, S.: Characterization of glutathione uptake in broad bean leaf protoplasts. - Plant Physiol. 111: 1145-1152, 1996.
Go to original source... - Lee, S., Moon, J.S., Ko, T.-S., Petros, D., Goldsbrough, P.B., Korban, S.S.: Overexpression of Arabidopsis phytochelatin synthase paradoxically leads to hypersensitivity to cadmium stress. - Plant Physiol. 131: 656-663, 2003.
Go to original source... - Maksymiec, W., Krupa, Z.: The effects of short-term exposition to Cd, excess Cu ions and jasmonate on oxidative stress appearing in Arabidopsis thaliana. - Environ. exp. Bot. 57: 187-894, 2006.
Go to original source... - Markovska, Y.K., Gorinova, N.I., Nedkovska, M.P., Miteva, K.M.: Cadmium-induced oxidative damage and antioxidant responses in Brassica juncea plants. - Biol. Plant. 53: 151-154, 2009.
Go to original source... - May, M.J., Leaver, C.J.: Oxidative stimulation of glutathione synthesis in Arabidopsis thaliana suspension cultures. - Plant Physiol. 103: 621-627, 1993.
Go to original source... - Maughan, S., Foyer, C.H.: Engineering and genetic approaches to modulating the glutathione network in plants. - Physiol. Plant. 126: 382-397, 2006.
Go to original source... - Peterson, A.G., Oliver, D.J.: Leaf-targeted phytochelatin synthase in Arabidopsis thaliana. - Plant Physiol. Biochem. 44: 885-892, 2006.
Go to original source... - Rouhier, N., Lemaire, S.D., Jacquot, J.-P.: The role of glutathione in photosynthetic organisms: emerging functions for glutaredoxins and glutathionylation. - Annu. Rev. Plant Biol. 59: 143-166, 2008.
Go to original source... - Sánchez-Fernández, R., Fricker, M., Corben, L.B., White, N.S., Sheard, N., Leaver, C.J., Van Montagu, M., Inzé, D., May, M.J.: Cell proliferation and hair tip growth in the Arabidopsis root are under mechanistically different forms of redox control. - Proc. nat. Acad. Sci. USA 94: 2745-2750, 1997.
Go to original source... - Schat, H., Llugany, M., Vooijs, R., Hartey-Hittaker, J., Bleeker, P.M.: The role of phytochelatins in constitutive and adaptive heavy metal tolerances in hyperaccumulator and non-hyperaccumulator metallophytes. - J. exp. Bot. 53: 2381-2392, 2002.
Go to original source... - Semane, B., Cuypers, A., Smeets, K., Van Belleghem, F., Horemans, N., Schat, H., Vangronsveld, J.: Cadmium responses in Arabidopsis thaliana: glutathione metabolism and antioxidative defence system. - Physiol. Plant. 129: 519-528, 2007.
Go to original source... - Senda, K., Ogawa, K.: Induction of PR-1 accumulation accompanied by runaway cell death in the lsd1 mutant of Arabidopsis is dependent on glutathione levels but independent of the redox state of glutathione. - Plant Cell Physiol. 45: 1578-1585, 2004.
Go to original source... - Skórzyńska-Polit, E., Drążkiewicz, M., Krupa, Z.: The activity of the antioxidative system in cadmium-treated Arabidopsis thaliana. - Biol. Plant. 47: 71-78, 2003/4.
Go to original source... - Szalai, G., Kellős, T., Galiba, G., Kocsy, G.: Glutathione as an antioxidant and regulatory molecule in plants under abiotic stress conditions. - J. Plant Growth Regul. 28: 66-80, 2009.
Go to original source... - Vatamaniuk, O.K., Mari, S., Lu, Y.P., Rea, P.A.: Mechanism of heavy metal ion activation of phytochelatin (PC) synthase: blocked thiols are sufficient for PC-synthase-catalysed transpeptidation of glutathione and related thiol peptides. - J. biol. Chem. 275: 31451-31459, 2000.
Go to original source... - Vernoux, T., Wilson, R.C., Seeley, K.A., Reichheld, J.-P., Muroy, S., Brown, S., Maughan, S.C., Cobbett, C.S., Van Montagu, M., Inzé, D., May, M.J., Sung, Z.R.: The ROOT MERISTEMLESS1/CADMIUM SENSITIVE2 gene defines a glutathione-dependent pathway involved in initiation and maintenance of cell division during postembryonic root development. - Plant Cell 12: 97-109, 2000.
Go to original source... - Wójcik, M., Tukiendorf, A.: Cadmium uptake, localization and detoxification in Zea mays. - Biol. Plant. 49: 237-245, 2005.
Go to original source... - Wójcik, M., Tukiendorf, A.: Response of wild type of Arabidopsis thaliana to copper stress. - Biol. Plant. 46: 79-84, 2003.
Go to original source... - Xiang, C., Werner, B.L., Christensen, E.M., Oliver, D.J.: The biological functions of glutathione revisited in Arabidopsis transgenic plants with altered glutathione levels. - Plant Physiol. 126: 564-574, 2001.
Go to original source... - Zhu, Y.L., Pilon-Smiths, E.A.H., Tarun, A.S., Jouanin, L., Terry, N.: Overexpression of glutathione synthetase in Indian mustard enhances cadmium accumulation and tolerance. - Plant Physiol. 119: 73-79, 1999a.
Go to original source... - Zhu, Y.L., Pilon-Smiths, E.A.H., Tarun, A.S., Weber, S.U., Jouanin, L., Terry, N.: Cadmium tolerance and accumulation in Indian mustard is enhanced by overexpressing γ-glutamylcysteine synthetase. - Plant Physiol. 121: 1169-1177, 1999b.
Go to original source...



