Drought |
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Alexieva et al. (2001)Alexieva V, Sergiev I, Mapelli S and Karanov E (2001) The effect of drought and ultraviolet radiation on growth and stress markers in pea and wheat. Plant Cell Environ 24:1337-1344.
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Luna et al. (2005)Luna C, Pastori, GM, Driscoll S, Foyer CH (2005) Drought controls on H2O2 accumulation, catalase (CAT) activity and CAT gene expression in wheat. J Exp Bot 56: 417-423.
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Devi et al. (2012)Devi R, Kaur N and Gupta AK (2012) Potential of antioxidant enzymes in depicting drought tolerance of wheat (Triticum aestivum L.). Indian J Biochem Biophys 49:257-265.
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Wang et al. (2008)Wang ZY, Li FM, Xiong YC and Xu BC(2008) Soil-water threshold range of chemical signals and drought tolerance was mediated by ROS homeostasis in winter wheat during progressive soil drying. J Plant Growth Regul 27:309-319.
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Salinity |
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Barakat (2011)Barakat NAM (2011) Oxidative stress markers and antioxidant potential of wheat treated with phytohormones under salinity stress. J Stress Physiol Biochem 7:250-267.
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Heidari (2009)Heidari M (2009) Antioxidant activity and osmolyte concentration of sorghum (Sorghum bicolor) and wheat (Triticum aestivum) genotypes under salinity stress. Asian J Plant Sci 8:240-244.
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Esfandiari et al. (2007)Esfandiari E, Shekari F, Shekari F and Esfandiari M (2007) The effect of salt stress on antioxidant enzymes' activity and lipid peroxidation on the wheat seedling. Not Bot Hort Agrobot Cluj 35:48-56.
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Sairam et al. (2002)Sairam RK, Rao KV and Srivastava GC (2002) Differential response of wheat genotypes to long term salinity stress in relation to oxidative stress, antioxidant activity and osmolyte concentration. Plant Sci 163:1037-1046.
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Cold |
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Janmohammadi et al. (2012)Janmohammadi M, Enayati V and Sabaghnia N (2012) Impact of cold acclimation, de-acclimation and re-acclimation on carbohydrate content and antioxidant enzyme activities in spring and winter wheat. Icel Agric Sci 25:3-11.
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Turk et al. (2014)Turk H, Erdal S, Genisel M, Atici O, Demir Y and Yanmis D (2014) The regulatory effect of melatonin on physiological, biochemical and molecular parameters in cold-stressed wheat seedlings. Plant Growth Regul 74:139-152.
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Heat |
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Badawi et al. (2007)Badawi GH, Tahir ISA, Nakata N and Tanaka K (2007) Induction of some antioxidant enzymes in selected wheat genotypes. African Crop Science Conference Proceedings 8:841-848.
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Ibrahim et al. (2013)Ibrahim MM, Alsahli AA and Al-Ghamdi AA (2013) Cumulative abiotic stresses and their effect on the antioxidant defense system in two species of wheat, Triticum durum desf and Triticum aestivum L. Arch Biol Sci 65:1423-1433.
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Gupta et al. (2013)Gupta NK, Agarwal S, Agarwal VP, Nathawat NS, Gupta S and Singh G (2013) Effect of short-term heat stress on growth, physiology and antioxidative defence system in wheat seedlings. Acta Physiol Plant 35:1837-1842.
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Wang et al. (2014)Wang C, Wen D, Sun A, Han X, Zhang J, Wang Z and Yin Y (2014) Changes in antioxidant enzyme activity and gene expression in response to high temperature stress in wheat seedlings. J Cereal Sci 60:653-659.
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UV-B |
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Ibrahim et al. (2013)Ibrahim MM, Alsahli AA and Al-Ghamdi AA (2013) Cumulative abiotic stresses and their effect on the antioxidant defense system in two species of wheat, Triticum durum desf and Triticum aestivum L. Arch Biol Sci 65:1423-1433.
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Alexieva et al. (2001)Alexieva V, Sergiev I, Mapelli S and Karanov E (2001) The effect of drought and ultraviolet radiation on growth and stress markers in pea and wheat. Plant Cell Environ 24:1337-1344.
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Barabás et al. (1998)Barabás KN, Szegletes Z, Pestenacz A, Fulop K and Erdei U (1998) Effects of excess UV-8 irradiation on the antioxidant defence mechanisms in wheat (Triticum aestivum L.) Seedlings. Plant Physiol 153:146-153.
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