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Genetic Resources Evaluation

Genotypic Diversity of Cross-Tolerance to Oxidative and Drought Stresses in Rice Seedlings Evaluated by the Maximum Quantum Yield of Photosystem II and Membrane Stability

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Pages 295-304 | Received 13 Dec 2012, Accepted 19 Feb 2013, Published online: 03 Dec 2015

  • Allen, R.D. 1995. Dissection of oxidative stress tolerance using transgenic plants. Plant Physiol. 107: 1049-1054.
  • Asada, K. 2006. Production and scavenging of reactive oxygen species in chloroplasts and their functions. Plant Physiol. 141: 391-396.
  • Atlin, G.N., Lafitte, H.R., Tao, D., Laza, M., Amante, M. and Courtois, B. 2006. Developing rice cultivars for high-fertility upland systems in the Asian tropics. Field Crops Res. 97: 43-52.
  • Babbs, C.F., Pham, J.A. and Coolbaugh, R.C. 1989. Lethal hydroxyl radical production in paraquat-treated plants. Plant Physiol. 90: 1267-1270.
  • Bajji, M., Kinet, J.M. and Lutts, S. 2002. The use of the electrolyte leakage method for assessing cell membrane stability as a water stress tolerance test in durum wheat. Plant Growth Regul. 36: 61-70.
  • Baker, N.R. and Rosenqvist, E. 2004. Applications of chlorophyll fluorescence can improve crop production strategies: an examination of future possibilities. J. Exp. Bot. 55: 1607-1621.
  • Blokhina, O., Virolainen, E. and Fagerstedt, K.V. 2003. Antioxidants, oxidative damage and oxygen deprivation stress: a review. Ann. Bot. 91: 179-194.
  • Bonnecarrere, V., Borsani, O., Diaz, P., Capdevielle, F., Blanco, P. and Monza, J. 2011. Response to photoxidative stress induced by cold in japonica rice is genotype dependent. Plant Sci. 180: 726-732.
  • Dionisio-Sese, M.L. and Tobita, S. 1998. Antioxidant responses of rice seedlings to salinity stress. Plant Sci. 135: 1-9.
  • Faraloni, C., Cutino, I., Petruccelli, R., Leva, A.R., Lazzeri, S. and Torzillo, G. 2011. Chlorophyll fluorescence technique as a rapid tool for in vitro screening of olive cultivars (Olea europaea L.) tolerant to drought stress. Environ. Exp. Bot. 73: 49-56.
  • Farooq, S. and Azam, F. 2006. The use of cell membrane stability (CMS) technique to screen for salt tolerant wheat varieties. J. Plant Physiol. 163: 629-637.
  • Fazeli F., Ghorbanli, M. and Niknam, V. 2007. Effect of drought on biomass, protein content, lipid peroxidation and antioxidant enzymes in two sesame cultivars. Biol. Plant. 51: 98-103.
  • Flexas, J., Bota, J., Loreto, F., Cornic, G. and Sharkey, T.D. 2004. Diffusive and metabolic limitations to photosynthesis under drought and salinity in C3 plants. Plant Biol. 6: 269-279.
  • Foyer, C.H., Lelandais, M. and Kunert, K.J. 1994. Photooxidative stress in plants. Physiol. Plant. 92: 696-717.
  • Glaszmann, J.C., Kaw, R.N. and Khush, G.S. 1990. Genetic divergence among cold tolerant rice (Oryza sativa L.). Euphytica 45: 95-104.
  • Guo, Z., Ou, W., Lu, S. and Zhong, Q. 2006. Differential responses of antioxidative system to chilling and drought in four rice cultivars differing in sensitivity. Plant Physiol. Biochem. 44: 828-836.
  • Halliwell, B. 2006. Reactive species and antioxidants. Redox biology is a fundamental theme of aerobic life. Plant Physiol. 141: 312-322.
  • Hikosaka, K., Kato, M.C. and Hirose, T. 2004. Photosynthetic rates and partitioning of absorbed light energy in photoinhibited leaves. Physiol. Plant. 121: 699-708.
  • Jiao, D. and Ji, B. 2001. Photoinhibition in indica and japonica subspecies of rice (Oryza sativa) and their reciprocal F1 hybrids. Aust. J. Plant Physiol. 28: 299-306.
  • Kato, S. 1930. On the affinity of cultivated varieties of rice plants, Oryza sativa L. J. Dept. Agric. Kyushu Imp. Univ. 2: 241-276*.
  • Keren, N. and Krieger-Liszkay, A. 2011. Photoinhibition: molecular mechanisms and physiological significance. Physiol. Plant. 142: 1-5.
  • Khush, G.S. 1997. Origin, dispersal, cultivation and variation of rice. Plant Mol. Biol. 35: 25-34.
  • Kojima, Y., Ebana, K., Fukuoka, S., Nagamine, T. and Kawase, M. 2005. Development of an RFLP-based rice diversity research set of germplasm. Breed. Sci. 55: 431-440.
  • Krieger-Liszkay, A. 2005. Singlet oxygen production in photosynthesis. J. Exp. Bot. 56: 337-346.
  • Kumagai, E., Araki, T. and Kubota, F. 2009. Characteristics of gas exchange and chlorophyll fluorescence during senescence of flag leaf in different rice (Oryza sativa L.) cultivars grown under nitrogen-deficient condition. Plant Prod. Sci. 12: 285-292.
  • Lee, K.S., Choi, W.Y., Ko, J.C., Kim, T.S. and Gregorio, G.B. 2003. Salinity tolerance of japonica and indica rice (Oryza sativa L.) at the seedling stage. Planta 216: 1043-1046.
  • Lilley, J.M. and Ludlow, M.M. 1996. Expression of osmotic adjustment and dehydration tolerance in diverse rice lines. Field Crops Res. 48: 185-197.
  • Maxwell, K. and Johnson, G.N. 2000. Chlorophyll fluorescence – a practical guide. J. Exp. Bot. 51: 659-668.
  • Mohamed, E.A., Iwaki, T., Munir, I., Tamoi, M., Shigeoka, S. and Wadano, A. 2003. Overexpression of bacterial catalase in tomato leaf chloroplasts enhances photo-oxidative stress tolerance. Plant Cell Environ. 26: 2037-2046.
  • Mohammadi, S.A. and Prasanna, B.M. 2003. Analysis of genetic diversity in crop plants – Salient statistical tools and considerations. Crop Sci. 43: 1235-1248.
  • Murata, N., Takahashi, S., Nishiyama, Y. and Allakhverdiev, S.I. 2007. Photoinhibition of photosystem II under environmental stress. Biochim. Biophys. Acta 1767: 414-421.
  • Pastori, G.M. and Trippi, V.S. 1992. Oxidative stress induces high rate of glutathione reductase synthesis in a drought-resistant maize strain. Plant Cell Physiol. 33: 957-961.
  • Razavi, F., Pollet, B., Steppe, K. and Van Labeke, M.C. 2008. Chlorophyll fluorescence as a tool for evaluation of drought stress in strawberry. Photosynthetica 46: 631-633.
  • Sairam, R.K., Deshmukh, P.S. and Saxena, D.C. 1998. Role of antioxidant systems in wheat genotypes tolerance to water stress. Biol. Plant. 41: 387-394.
  • Sairam, R.K. and Saxena, D.C. 2000. Oxidative stress and antioxidants in wheat genotypes: possible mechanism of water stress tolerance. J. Agron. Crop Sci. 184: 55-61.
  • Sunkar, R., Bartels, D. and Kirch, H.H. 2003. Overexpression of a stress-inducible aldehyde dehydrogenase gene from Arabidopsis thaliana in transgenic plants improves stress tolerance. Plant J. 35: 452-464.
  • Tambussi, E.A., Bartoli, C.G., Beltrano, J., Guiamet, J.J. and Araus, J.L. 2000. Oxidative damage to thylakoid proteins in water-stressed leaves of wheat (Triticum aestivum). Physiol. Plant. 108: 398-404.
  • Tripathy, J.N., Zhang, J., Robin, S., Nguyen, T.T. and Nguyen, H.T. 2000. QTLs for cell-membrane stability mapped in rice (Oryza sativa L.) under drought stress. Theor. Appl. Genet. 100: 1197-1202.
  • Wang, Q.A., Lu, C.M. and Zhang, Q.D. 2005. Midday photoinhibition of two newly developed super-rice hybrids. Photosynthetica 43: 277-281.
  • Wingler, A., Quick, W.P., Bungard, R.A., Bailey, K.J., Lea, P.J. and Leegood, R.C. 1999. The role of photorespiration during drought stress: an analysis utilizing barley mutants with reduced activities of photorespiratory enzymes. Plant Cell Environ. 22: 361-373.
  • Yeo, M.E., Yeo, A.R. and Flowers, T.J. 1994. Photosynthesis and photorespiration in the genus Oryza. J. Exp. Bot. 45: 553-560.
  • Zhou, Y., Lam, H.M. and Zhang, J. 2007. Inhibition of photosynthesis and energy dissipation induced by water and high light stresses in rice. J. Exp. Bot. 58: 1207-1217.