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6. REFERENCES

 

Aldrich H.C., Ferl R.J., Hils M.H. and Akin D.E. (1985). Ultrastructural correlates of anaerobic stress in corn roots. Tissue & Cell. 17: 341-348.

Alscher R.G. (1989). Biosynthesis and antioxidant function of glutathione in plants. Physiol. Plant. 77: 457-464.

Alscher R.G., Donahue J.L. and Cramer C.L. (1997). Hypoxia-inducible factor 1: master regulator of O 2 homeostasis. Reactive oxygen species and antioxidants: Relationships in green cells. Physiol. Plant. 100: 224-233.

Andreev V.Y., Generosova I.P. and Vartapetian B.B. (1991). Energy status and mitochondrial ultrastructure of excised pea root at anoxia and postanoxia. Plant Physiol. Biochem. 29: 171-176.

Andrews D., Cobb B.G., Johnson J.R. and Drew M.C. (1993). Hypoxic and anoxic induction of alcohol dehydrogenase in roots and shoots of seedlings of Zea mays. Plant Physiol. 101: 407-414.

Arora A., Byrem. T.M., Nair M.G. and Strasbutg G.M. (2000). Modulation of liposomal membrane fluidity by flavonoids and isoflavonoids. Arch. Biochem. Biophys. 373: 102-109.

Avsian-Kretchmer O., Eshdat Y., Gueta-Dahan Y., Ben-Hayyim G. (1999). Regulation of stress-induced phosphilipid hydroperoxide glutathione peroxidase expression in citrus. Planta 209: 469-477.

Azzi A., Boscoboinik D., Marilley D., Özer N.K., Stäuble B., Tasinato A. (1995). Vitamin E: a sensor and an information transducer of the cell oxidation state. Am. J. Clin. Nutr. 62(suppl.): 1337S-1346S.

Baier M. and Dietz K.J. (1997). The plant 2-cys peroxiredoxin BAS1 is a nuclear encoded chloroplast protein: Its expression, regulation, phylogenetic origin and implications for its specific physiological functions in plants. Plant Journal 12: 179-190.

Bannister J.V., Bannister W.H. and Rotilio G. (1987). Aspects of the structure, function and applications of superoxide dismutase. CRC Crit. Rev. Biochem. 22: 111-180.

Bernardi P. (1992). Modulation of the mitochondrial cyclosporin A-sensitive permeability transition pore by the proton electrochemical gradient. Evidence that the pore can be opened by membrane depolarisation. J. Biol. Chem. 267. 8834-8839.

Bernardi P. (1999). Mitochondrial transport of cations: Channels, exchangers and permeability transition. Physiol. Rev. 79: 1127-1154.

Bernardi P., Broekmeier K.M. and Pfeiffer D.R. (1994). Recent progress on regulation of the mitochondrial permeability transition pore: A cyclosporin-sensitive pore in the inner mitochondrial membrane. J. Bioenerg. Biomembr. 26: 509-517.

Bernardi P. and Petronilli V. (1996). The permeability transition pore as a mitochondrial calcium release channel: A critical appraisal. J. Bioenerg. Biomembr. 28: 131-138.

Bernardi P., Scorrano L., Colonna R., Petronilli V. and Di Lisa F. (1999). Mitochondria and cell death. Mechanistic aspects and methodological issues. Eur. J. Biochem. 264: 678-701.

Bestwick C.S., Brown I.R., Bennett M.H.R. and Mansfield J.M. (1997). Localization of hydrogen peroxide accumulation during the hypersensitive reaction of lettuce cells to Pseudomonas syringae cv. phaseolicola. Plant Cell 9: 209-221.

Beyer R.E. (1994). The role of ascorbate in antioxidant protection of biomembranes: interaction with vitamin E and coenzyme Q. J. Bioenerg. Biomembr. 26(4): 349-358.

Biemelt S., Albrecht G. and Wiedenroth E.-M. (1996). The effect of post-hypoxia on roots in Senecio and Myosotis species related to the glutathione system. Folia Geobot. Phytotax.31: 65-72.

Biemelt S., Keetman U. and Albrecht G. (1998). Re-aeration following hypoxia or anoxia leads to activation of the antioxidative defense system in roots of wheat seedlings. Plant Physiol.116: 651-658.

Blokhina O.B., Fagerstedt K.V. and Chirkova T.V. (1999). Relationships between lipid peroxidation and anoxia tolerance in a range of species during post-anoxic reaeration. Physiol. Plant. 105(4): 625-632.

Bolwell G.P. and Wojtaszek P. (1997). Mechanisms for generation of reactive oxygen species in plant defence - a broad perspective. Physiol. Mol. Plant Pathol. 51: 347-366.

Boo Y.C. and Jung J. (1999). Water deficit-induced oxidative stress and antioxidative defenses in rice plants. J. Plant Physiol. 155: 255-261.

Bowler C., Van Montagu M. and Inze D. (1992). Superoxide dismutase and stress tolerance. Ann. Rev. Plant Physiol. Plant Mol. Biol.43: 83-116.

Bradford M.M. (1976). A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem. 72: 248-254.

Breviario D., Giani S., Morello L. and Coraggio I. (1994). Anaerobiosis-mediated early transcriptional and translational responses in rice ( Oryza sativa L.) coleoptiles and roots. Plant Cell Env. 17: 925-934.

Buettner G.R. (1993). The pecking order of free radicals & antioxidants: lipid peroxidation, -tocopherol & ascorbate. Arch. Biochem. Bioph. 300(2): 535-543.

Burkey K.O., Wilson R.F. and Wells R. (1997). Effects of canopy shade on the lipid composition of soybean leaves. Phys. Plant. 101(3): 591-598.

Chirkova T.V. (1988). Plant adaptation to hypoxia and anoxia. Leningrad. Leningrad State University Press. ISBN 5-288-00072-7, 245p.

Chirkova T.V., Novitskaya L.O. and Blokhina O.B. (1998). Lipid peroxidation and antioxidant systems under anoxia in plants differing in their tolerance to oxygen deficiency. Russian J. Plant Physiol. 45(1): 55-62.

Chirkova TV, Saakov VS, Semenova AV, Andreeva AV (1993). The effect of anoxia on the structural and biochemical properties of mitochondrial proteins in the roots of wheat and rice seedlings. Russ J Plant Physiol 40: 650-655.

Chirkova T.V., Sinyutina N. F., Blyudzin Y. A., Barsky I. E. and Smetannikova S. V. (1989). Phospholipid fatty acids of root mitochondria and microsomes from rice and wheat seedlings exposed to aeration or anaerobiosis. Plant Physiol . (Russian) 36(1): 126-134.

Chirkova T.V. and Voitzekovskaya S.A. (1999). Plant protein synthesis under hypoxia and anoxia. Uspekhi Sovr. Biol. 119: 178-189.

Chirkova T.V., Zhukova T.M. and Bugrova M.P. (1992). Redox reactions of plant cells in response to short-term anaerobiosis. Vestnik SPBGU (Russian) 3(1): 82-86.

Chirkova T.V., Zhukova T.M., Goncharova N.N. (1991) Method of determination of plant resistance to oxygen shortage. Russian J. Plant Phys. 38(2): 359-364.

Chirkova T.V., Zhukova T.M. and Tretiakov A.L. (1984). Adenine nucleotides in wheat and rice seedlings under aeration and anoxia. Vestnik LGU (Russian) 15: 74-81.

Clement M.-V., Ponton A. and Pervaiz S. (1998) Apoptosis induced by hydrogen peroxide is mediated by decreases superoxide anion concentration and reduction of intracellular milieu. FEBS Letters 440: 13-18.

Corongiu F.P., Poli G., Dianzani M.U., Cheeseman K.H. and Slater T.F. (1986). Lipid peroxidation and molecular damage to polyunsaturated fatty acids in rat liver. Recognition of two classes of hydroperoxides formed under conditions in vivo. Chem. Biol. Interact. 59(2): 147-155.

Crawford R.M.M. (1992). Oxygen availability as an ecological limit to plant distribution. Adv. Ecol. Res. 23: 93-185.

Crawford R.M.M., Walton J.C. and Wollenweber-Ratzer B. (1994). Similarities between post-ischaemic injury to animal tissues and post anoxic injury in plants. Proc. Royal Soc. Edinb. 102B: 325-332.

Crawford R.M.M. and Zochowski Z.M. (1984). Tolerance of anoxia and ethanol toxicity in checkpea seedlings ( Cicer arietinum L.). J. Exp. Bot. 35: 1472-80.

Dolferus R., Ellis M., De Bruxelles G., Trevaskis B., Hoeren F., Dennis E.S. and Peacock W.J. (1997). Strategies of gene action in Arabidopsis during hypoxia. Ann. Bot. 79 (Suppl. A): 21-31.

Douce R.D., Bourguignon J., Brouquisse R. and Neuburger M. 1987. Isolation of plant mitochondria: General principles and criteria of integrity. Meth. Enzymol. 148: 403-409.

Drew M.C. (1997) Oxygen deficiency and root metabolism: Injury and acclimation under hypoxia and anoxia. Annu. Rev. Plant Physiol. Plant Mol. Biol. 48: 223-250.

Elstner E.F. (1987). Metabolism of activated oxygen species. In: D.D. Davies (ed.) Biochemistry of plants. vol. 11. Academic press, London. pp. 253-315. ISBN 0-12-675411-X.

Eriksson O., Fontaine E. and Bernardi P. (1998). Chemical modification of arginines by 2,3-butanedione and phenylglyoxal causes closure of the mitochondrial permeability transition pore. J. Biol. Chem. 273(20): 12669-12674.

Folch J., Lees M. and Sloane-Stanley G.H. (1957). A simple method for the isolation of total lipids from animal tissues. J. Biol. Chem. 226: 497-509.

Foyer C.H., Lelandais M. and Kunert K.J. (1994). Photooxidative stress in plants. Physiol. Plant. 92: 696-717.

Foyer C.H., Lopez-Delgado H., Dat J.F. and Scott I.M. (1997) Hydrogen peroxide- and glutathione-associated mechanisms of acclimatory stress tolerance and signalling. Physiol. Plant. 100: 241-254.

Frenkel C. (1991). Disruption of macromolecular hydration A possible origin of chilling destabilisation of biopolymers. Trends Food Sci. Technol. 2: 39-41.

Fryer M.J. (1992). The antioxidant effects of thylakoid vitamin E (-tocopherol). Plant Cell Environ 15: 381-392.

Gerlach E. and Deutike B. (1963). Eine einfache Methode zur Mikrobestimmung von Phosphat in der Papierchromatographie. Biochem. Z. 337(4): 477-479.

Giannopolitis S. and Ries S.K. (1977). Superoxide dismutases. Occurrence in higher plants. Plant Physiol 59: 309-314.

Gomez-Fernandez J.C., Villalain J., Aranda F.J., Ortiz A., Micol V., Coutinho A., Berberan-Santos M.N. and Prieto M.J.E. (1989). Localization of -tocopherol in membranes. Ann. New York Acad. Sci. 570: 109-120.

Goodman B. A. (1994). The involvement of oxygen derived free radicals in plant-pathogen interactions. Proc. Royal Soc. Edinb. 102B: 479-493.

Grill E., Winnacker E.L. and Zenk M.H. (1989). Phytochelatins, a class of heavy-metal-binding peptides from plants are synthesized from glutathione by a specific -glutamylcysteine dipeptidyl transpeptidase (phytochelatin synthase). Proc. Nat. Acad. Sci. USA 84: 439-443.

Halliwell B. and Gutterige J.M.C. (eds.) (1989). Free radicals in biology and medicine. 2nd ed. Oxford: Clarendon press. 123-126.

Hanhijärvi A.M. and Fagerstedt K.V. (1994). Comparison of the effect of natural and experimental anoxia on carbohydrate and energy metabolism in Iris pseudacorus rhizomes. Physiol. Plant. 90: 437-444.

Hanhijärvi A.M and Fagerstedt K.V. (1995). Comparison of carbohydrate utilization and energy charge in the yellow flag iris ( Iris pseudacorus ) and garden iris ( Iris germanica ) under anoxia. Physiol. Plant. 93: 493-497.

Haramaki N., Stewart D.B., Aggarwal S., Ikeda H., Reznick A.Z., Packer L. (1998). Networking antioxidants in the isolated rat heart are selectively depleted by ischemia-reperfusion. Free Rad. Biol. Med. 25(3): 329-339.

He C.J., Drew M.C. and Morgan P.W. (1994). Induction of enzymes associated with lysigenous aerenchyma formation in roots of Zea mays during hypoxia and nitrogen starvation. Plant Physiol. 105: 861-865.

Henzi T. and Brändle R. (1993). Long term survival of rhizomatous species under oxygen deprivation. In: Interacting stresses on plants in a changing climate (Jackson M. B. and Black C. R, eds), NATO ASI Series, Vol I 16, pp. 305-314. Springer-Verlag, Berlin, Heidelberg.

Hetherington A.M., Hunter M.I. and Crawford R.M.M. (1982). Contrasting effects of anoxia on rhizome lipids of Iris species. Phytochem. 21(6): 1275-1278.

Hill R.D. (1998). What are hemoglobins doing in plants? Can. J. Bot. 76: 707-712.

Holden M.J. and Sze H. (1987). Dissipation of membrane potential in susceptible corn mitochondria by the toxin of Helminthosporium maydis , race T, and toxin analogs. Plant physiol. 84: 670-676.

Huq E. and Hodges T.K. (1999). An anaerobically inducible early (aie) gene family from rice. Plant Mol. Biol. 40: 591-601.

Hurkman W.J. and Tanaka C.K. (1996). Effect of salt stress on germin gene-expression in barley roots. Plant Physiol. 110: 971-977

Ichas F., Jouaville S. and Mazat J.-P. (1997). Mitochondria are excitable organelles capable of generating and conveying electrical and calcium signals. Cell. 89: 1145-1153.

Jackson M.B. (1985). Ethylene and responses of plants to soil waterlogging and submergence. Ann. Rev. Plant Physiol. 36: 145-174.

Jimenez A., Hernandez J.A., Pastori G., del Rio L.A. and Sevilla F. (1998). Role of the ascorbate-glutathuone cycle of mitochondria and peroxisomes in the Senescence of pea leaves. Plant physiol. 118: 1327-1335.

Jung D.W., Bradshaw P.C. and Pfeiffer D.R. (1997). Properties of a cyclosporin-insensitive permeability transition pore in yeast mitochondria. J. Biol. Chem. 272: 21104-12.

Kagan V.E. (1989). Tocopherol stabilizes membrane against phospholipase A, free fatty acids, and lysophospholipids. Ann. N. Y. Acad. Sci. 570: 121-135.

Kalashnikov Ju.E., Balakhnina T.I. and Zakrzhevsky D.A. (1994). Effect of soil hypoxia on activation of oxygen and the system of protection from oxidative destruction in roots and leaves of Hordeum vulgare . Rus. J. Plant Physiol. 41: 583-588.

Kamal-Eldin A. and Appelqvist L.-A. (1996). The chemistry and antioxidant properties of tocopherols and tocotrienols. Lipids 31(7): 671-701.

Kanofsky J.R. and Axelrod B. (1986). Singlet oxygen production by soybean lipoxygenase isozymes. J. Biol. Chem. 261: 1099-1104.

Kates M. (1972). Techniques of lipidology. Isolation, analysis and identification of lipids. In: Work T.S. and Work E. (eds) Laboratory techniques in biochemistry and molecular biology. V.3, part II. Amsterdam, North-Holland Publ., 270-610. ISBN 0 07204 4210 9 .

Kubo A., Aono M., Nakajima N., Saji H., Tanaka K. and Kondo N. (1999). Differential responses in activity of antioxidant enzymes to different environmental stresses in Arabidopsis thaliana. J. Plant. Res 112: 279-290.

Kurganova L.N., Veselov A.P., Sinistina Y.V. and Elikova E.A. (1999). Lipid peroxidation products as possible mediators of heat stress response in plants. Rus. J. Plant Physiol. 46: 181-185.

Kuzminova A.E., Zhuravlyova A.V., Vyssokikh M.Yu., Zorova L.D., Krasnikov B.F. and Zorov D.B. (1998). The permeability transition pore induced under anaerobic conditions in mitochondria energised with ATP. FEBS Letters 434: 313-316.

Lal S.K., Lee C. and Sachs M.M. (1998). Differential regulation of enolase during anaerobiosis in maize. Plant Physiol. 118: 1285-1293.

Lamb C. and Dixon R.A. (1997). The oxidative burst in plant disease resistance. Annu. Rev. Plant Physiol. Plant Mol. Biol. 48:251-275.

Lander H.M. (1997). An essential role for free radicals and derived species in signal transduction. FASEB J. 11: 118-124.

Lynch D.V. and Thompson J.E. (1984). Lipoxygenase-mediated production of superoxide anion in senescing plant tissue. FEBS Lett. 173: 251-254.

Mannella C.A., Marko M. and Buttle K. (1997). Reconsidering mitochondrial structure: New views of an old organelle. TIBS 22: 37-38.

May M.J., Vernoux T., Leaver C., Van Montagu M. and Inze D. (1998). Glutathione homeostasis in plants: implications for environmental sensing and plant development. J. Exp. Bot. 49(321): 649-667.

Merzlyak M.N. (1989). Activated oxygen and oxidative processes in plant cell membranes. Itogi Nauki Tekhn., Ser. Plant. Physiol. 6: 1-167.

Monk L.S., Fagerstedt K.V. and Crawford R.M.M. (1989). Oxygen toxicity and superoxide dismutase as an antioxidant in physiological stress. Physiol. Plant. 76: 456-459.

Moore A.L. and Bonner W.D. Jr. (1982). Measurements of membrane potentials in plant mitochondria with the safranine method. Plant Physiol. 70: 1271-1276.

Nakano Y. and Asada K. (1980). Spinach chloroplasts scavenge hydrogen peroxide on illumination. Plant Cell Physiol. 21: 1295-1307.

Noctor G. and Foyer C.H. (1998). Ascorbate and glutathione: keeping active oxygen under control . Ann. Rev. Plant Physiol. Plant Mol. Biol. 49: 249-279.

Perata P.,Pozueta J., Akazava T. and Yamaguchi J. (1992). Effect of anoxia on starch breakdown in rice and wheat seeds. Planta 188: 611-8.

Petrussa E., Braidot E., Nagy G., Vianello A. and Macri F. (1992). Electrical potential dissipation induced by free fatty acids in pea stem mitochondria. FEBS Letters 307: 267-271.

Pfister-Sieber M. and Braendle R. (1994). Aspects of plant behavior under anoxia and post-anoxia. Proc. Royal Soc. Edinb. 102B: 313-324.

Ratcliffe R.G. (1995). Metabolic acpects of the anoxic response in plant tissue. In: N. Smirnoff (ed.) Environment and Plant Metabolism: Flexibility and Acclimation. 111127. Oxford: Bios Sci. ISBN-1-872748-93-7

Rawyler A., Pavelic D., Gianninazzi C., Oberson J. and Braendle R. (1999). Membrane lipid integrity relies on a threshold of ATP production rate in potato cell cultures submitted to anoxia. Plant Physiol. 120: 293-300.

Recknagel R.O. and Glende E.A.Jr. (1984). Spectrophotometric detection of lipid conjugated dienes. Methods Enzymol.105: 331-337.

Reggiani R. and Bertani A. (1989). Effect of decreasing oxygen concentration on polyamine metabolism in rice and wheat shoots. J. Plant Physiol. 135: 375-377.

Rice-Evans C.A., Miller N.J. and Paganga G. (1997). Antioxidant properties of phenolic compounds. Trends Plant Sci. 2(4): 152-159.

Richard B., Couce I., Raymond P., Saglio P.H., Saint-Ges V. and Pradet A. (1994). Plant metabolism under hypoxia and anoxia. Plant Physiol. Biochem. 32(1): 1-10.

Rickauer M., Brodschelm W., Bottin A., Veronesi C., Grimal H. and Esquerretugaye M.T. (1997). The jasmonate pathway is involved differentially in the regulation of different defense responses in tobacco cells. Planta 202(2): 155-162.

Rosahl S. (1996). Lipoxygenases in plants their role in development and stress response. Z. Naturforsch. 51c: 123-138.

Rubin B.A., Merzlyak M.N. and Juferova S.G. (1976). Oxidation of lipid components in isolated chloroplasts under lighting. The substrates and products of lipid peroxidation. Fiziol. Rast. 23: 254-261 (in Russian).

Russel D.A. and Sachs M.M. (1991). The maize cytosolic glyceraldehyde-3-phosphate dehydrogenase gene family: Organ specific expression and genetic analysis. Mol. Gen. Genet 229: 219-228.

Sachs M.M., Freeling M. and Okimoto R. (1980). The anaerobic proteins of maize. Cell 20: 761767.

Sachs M.M., Subbaiah C.C. and Saab I.N. (1996). Anaerobic gene expression and flooding tolerance in maize. J. Exp. Bot. 47(294): 1-15.

Saglio P.H. (1985). Effect of path or sink anoxia on sugar translocation in roots of maize seedlings. Plant Physiol. 77: 285-290.

Sairam R.K., Deshmukh P.S. and Saxena D.C. (1998). Role of antioxidant systems in wheat genotype tolerance to water stress. Biol. Plantarum. 41: 387-394.

Samala S., Yan, J.Y. and Baird W.V. (1998). Changes in polar lipid fatty acid composition during cold acclimation in Midiron and U3 bermudagrass. Crop Science 38(1): 188-195.

Saucy F., Ducret F., Lambelet P. and Löliger J. (1990). The fate of antioxidant radicals during lipid autoxidation. II. The influence of oxygen supply on lipid autoxidation. Chem. Phys. Lipids 55: 215-221.

Scarpa A. (1979). Measurement of cation transport with metallochromic indicators. Methods Enzymol. 56: 301-338.

Scebba F., Sebastiani L. and Vitagliano C. (1998). Changes in activity of antioxidative enzymes in wheat (Triticum aestivum) seedlings under cold acclimation. Physiol. Plant. 104: 747-752.

Sedbrook J.C., Kronebush P.J., Borisy G.G., Trewavas A.J. and Masson P.H. (1996). Transgenic AEQUORIN reveals organ-specific cytosolic Ca 2+ responses to anoxia in Arabidopsis thaliana seedlings. Plant Physiol. 111: 243-257.

Semenza G.L. (1998). Hypoxia-inducible factor 1: master regulator of O 2 homeostasis. Curr. Opin. Genet. Dev. 8: 588-594.

Semenza G.L. (1999). Perspectives on oxygen sensing. Cell 98: 281-284.

Shewfelt R.L. and Purvis A.C. (1995). Toward a comprehensive model for lipid peroxidation in plant tissue disorders. Hort. Science 30(2): 213-218.

Skulachev V.P. (1997). Membrane-linked systems preventing superoxide formation. Bioscience reports, 17(3): 347-366.

Skulachev V.P. (1998). Cytochrome c in the apoptotic and antioxidant cascades. FEBS Lett.423: 275-280.

Smirnoff N. (1995). Antioxidant systems and plant response to the environment. In: N. Smirnoff (ed.) Environment and plant metabolism: Flexibility and Acclimation. Bios Scientific publishers, Oxford. pp.217-243. ISBN-1-872748-93-7

Subbaiah C.C., Bush D.S. and Sachs M.M. (1998). Mitochondrial contribution to the anoxic Ca 2+ signal in maize suspension-cultured cells. Plant Physiol. 118: 759-771.

Sugimoto M., Furui S., Suzuki Y. (1997). Molecular cloning and characterisation of a cDNA encoding putative phospholipid hydroperoxide glutathione peroxidase from spinach. Biosci. Biotech. Biochem. 61: 1379-1381.

Szabo I and Zoratti M. (1991). Thr giant channel of the inner mitochondrial membrane is inhibited by cyclosporin A. J. Biol. Chem. 266: 3376-3379.

Takahama U. and Oniki T. (1997). A peroxide/phenolics/ascorbate system can scavenge hydrogen peroxide in plant cells. Physiol. Plant. 101: 845-852.

Tarchevskii I.A. (1992) Regulatory role of degradation of biopolymers and lipids. Fiziol. Rastenii, 39:1215-1223.

Taylor E.R., Nie X.Z., MacGregor A.W. and Hill R.D. (1994). A cereal haemoglobin gene is expressed in seed and root tissues under anaerobic conditions. Plant Mol. Biol. 24: 853-862.

Thomas C.E., McLean L.R., Parker R.A. and Ohlweiler D.F. (1992). Ascorbate and phenolic antioxidant interactions in prevention of liposomal oxidation. Lipids 27(7): 543-550.

Thompson J.N. and Hatina G. (1979). Determination of tocopherols and tocotrienols in foods and tissues by high performance liquid chromatography. J. Liq. Chrom. 2: 327-344.

Ushimaru T., Shibasaka M. and Tsuji H. (1994). Resistance to oxidative injury in submerged rice seedlings after exposure to air. Plant Cell Physiol. 35(2): 211-218.

Van Ginkel G. and Sevanian A. (1994). Lipid peroxidation-induced membrane structural alterations. Meth. Enzymol. 223: 273-282.

Van Toai T.T. and Bolles C.S. (1991). Postanoxic injury in Soybean ( Glycine max ) seedlings. Plant Physiol. 97: 588-592.

Wassal S.R., Thewalt J.L., Wong L., Gorrissen H. and Cushley R.J (1986). Deuterium NMR study of the interaction of -tocopherol with a phospholipid model membrane. Biochem 25: 319-326.

Vartapetian B.B., Zakhmilova N.A. (1990) Ultrastructure of wheat seedling mitochondria under anoxia and postanoxia. Protoplasma 156: 39-44.

Vianello A., Macri F., Braidot E. and Mokhova E.N. (1995). Effect of cyclosporin A on energy coupling in pea stem mitochondria. FEBS Lett. 371: 258-260.

Yamasaki H. and Grace S.C. (1998). EPR detection of phytophenoxyl radicals stabilized by zinc ions: Evidence for the redox coupling of plant phenolics with ascorbate in the H 2 O 2 -peroxidase system. FEBS Letters 422: 377-380.

Yan B., Dai Q., Liu X., Huang S. and Wang Z. (1996). Flooding-induced membrane damage, lipid oxidation and activated oxygen generation in corn leaves. Plant & Soil 179: 261-268.

Yu Q. and Rengel Z. (1999). Drought and salinity differentially influence activities of superoxide dismutase in narrow-leafed lupins. Plant Science 142: 1-11.

Zottini M. and Zannoni D. (1993). The use of fura-2 fluorescence to monitor the movement of free calcium ions into the matrix of plant mitochondria ( Pisum sativum and Helianthus tuberosus ). Plant Physiol. 102: 573-578.


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