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Acta Biologica Hungarica
Authors: Gábor Máté, Dominika Kovács, Zoltán Gazdag, Miklós Pesti, and Árpád Szántó

. Carmel-Harel , O. , Storz , G. ( 2000 ) Roles of the glutathione-and thioredoxin-dependent reduction system in the Escherichia coli and Saccharomyces cerevisiae responses to oxidative stress . Ann. Rev. Microbiol. 54 , 439 – 461

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Acta Biologica Hungarica
Authors: C. Pekcetin, Muge Kiray, B. Ergur, K. Tugyan, H. Bagriyanik, G. Erbil, Basak Baykara, and U. Camsari

1283 1288 Floyd, R. A., Hensley, K. (2002) Oxidative stress in brain aging. Implications for therapeutics of neurodegenerative diseases. Neurobiol. Aging 23 , 795

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Ambrus, H., Darkó, É., Szabó, L., Bakos, F., Király, Z., Barnabás, B. (2006): In vitro selection in maize anther culture with oxidative-stress stimulators. Protoplasma , 228 , 87–94. Barnabás B

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stress ( Zheng et al., 2018 ). Oxidative stress, due to increased production of reactive oxygen species (ROS) and decreased hepatic antioxidant defense system, plays a major role in the pathophysiological mechanisms of diabetes linked to impairment in

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Di Meo, S., Venditti, P. (2001) Mitochondria in exercise-induced oxidative stress. Biol. Signals. Recept. 10 , 125–140. Venditti P. Mitochondria in exercise-induced oxidative

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217 Baynes, J. W., Thrope, S. R. (1999) Oxidative stress in diabetic complications. Diabetes 48 , 1–9. Thrope S. R

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Acta Agronomica Hungarica
Authors: G. Kocsy, Magda Pál, A. Soltész, G. Szalai, Á. Boldizsár, V. Kovács, and T. Janda

Apel, K., Hirt, H. (2004): Reactive oxygen species: metabolism, oxidative stress, and signal transduction. Annu. Rev. Plant Biol. , 55 , 373–399. Hirt H. Reactive oxygen species

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Bi, J. L., Felton, G. W. (1995) Foliar oxidative stress and insect herbivory: primary compounds, secondary metabolites, and reactive oxygen species as components of induced resistance. J. Chem. Ecol. 21 , 1511

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References 1. Ara , G. , Afzal , M. , Jyoti , S. , Siddique , Y. H. ( 2017 ) Effect of myricetin on the oxidative stress markers in the brain of transgenic

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of maize genotypes to salinity stress in relation to osmolytes and metal-ions contents, oxidative stress and antioxidant enzymes activity. Biol. Plant 53 :249–256. Srivastava G

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