• Reference :1

    Abdul, C.J., Gopi, R., Manivannan, P., Panneerselvam, R., 2007. Antioxidative potentials as a protective mechanism in Catharanthus roseus L. Turkish Journal of Botany 31, 245–251.

    Aebi, H., 1974. Catalase. In: Bergmeyer, H.U. (Ed.), Methods of enzymatic analysis. Verlag Chemie/Academic Press Inc. Weinheim/NewYork, 673–680.

    Ahanger, M.A., Mir, R.A., Alyemeni, M.N., Ahmad, P., 2020. Combined effects of brassinosteroid and kinetin mitigates salinity stress in tomato through the modulation of antioxidant and osmolyte metabolism. Plant Physiology and Biochemistry, 147, 31–42. doi: 10.1016/j.plaphy.2019.12.007

    Ahmad, P., Jaleel, C.A., Salem, M.A., Nabi, G., Sharma, S., 2010. Roles of enzymatic and non-enzymatic antioxidants in plants during abiotic stress. Critical Reviews in Biotechnology, 30, 161–175.

    Ahmad, P., Kumar, A., Ashraf, M., Akram, N.A., 2012. Salt-induced changes in photosynthetic activity and oxidative defense system of three cultivars of mustard (Brassica juncea L.). African Journal of Biotechnology 11, 2694–2703.

    Ahmad, P., Umar, S., 2011. Oxidative stress: role of antioxidants in plants. Studium Press, New Delhi, 19–53

    Akbar, M., 1986. Breeding for salinity tolerance in rice. In: IRRI (Ed.), Salt-affected soils of Pakistan, India and Thailand. International Rice Research Institute, Manila, Philippines, 39–63.

    Alche, J.D., 2019. A concise appraisal of lipid oxidation and lipoxidation in higher plants. Redox biology, 23, 101136. doi: 10.1016/j.redox.2019.101136.

    Ali, M., Afzal, S., Parveen, A., Kamran, M., Javed, M.R., Abbasi, G.H., Malik, Z., Riaz, M., Ahmad, S., Chattha, M.S., 2021. Silicon mediated improvement in the growth and ion homeostasis by decreasing Na+ uptake in maize (Zea mays L.) cultivars exposed to salinity stress. Plant Physiology and Biochemistry, 158, 208–218.

    Asada, K., 1992. Ascorbate peroxidase-a hydrogen peroxide scavenging enzyme in plants. Plant Physiology 85, 235–241.

    Asada, K., 1999. The water-water cycle in chloroplasts: scavenging of active oxygen and dissipation of excess photons. Annual Review of Plant Physiology and Plant Molecular Biology 50, 601–639.

    Beauchamp, C.O., Fridovich, I., 1971. Superoxide dismutase: improved assays and an assay applicable to acrylamide gels. Annual Review of Biochemistry 44, 276–287.

    Bhattacharjee, S., 2019. ROS and oxidative stress: Origin and implication. In reactive oxygen species in plant biology; Springer: New Delhi, India, 2019, 1–31

    Bhattacharjee, S., Mukherjee, A.K., 1997. Role of free radicals in membrane deterioration in three rice (Oryza  sativa L.) cultivars under NaCl salinity at early germination stage. Indian Journal of Experimental Biology 35, 1365–1369

    Bowler, C., Van Montagu, M., Inze, D., 1992. Superoxide dismutase and stress tolerance. Annual Review of Plant Physiology and Plant Molecular Biology 43, 83–116.

    Chaparzadeh, N.D., Amico, M.L., Khavari-Nejad, R.A., Izzo, R., Navari-Izzo, F., 2004. Antioxidative responses of Calendula Officinalis under salinity conditions. Plant Physiology Biochemistry 42, 695–701.

    Lin, C.C., Kao, C.H., 2004. Effect of NaCl stress on H2O2 metabolism in rice leaves. Plant Growth Regulation 30, 151–155.

    Chunthaburee, S., Dongsansuk, A., Sanitchon, J., Pattanagul, W., Theerakulpisut, P., 2016. Physiological and biochemical parameters for evaluation and clustering of rice cultivars differing in salt tolerance at seedling stage. Saudi Journal of Biological Sciences 23(4), 467–477.

    Cunha, J.R., Neto, M.C.L., Carvalho, F.E., Martins, M.O., Jardim-Messeder, D., Margis-Pinheiro, M., Silveira, J.A., 2016. Salinity and osmotic stress trigger different antioxidant responses related to cytosolic ascorbate peroxidase knockdown in rice roots. Environmental and Experimental Botany 131, 58–67.

    Del Rio, L.A., Corpas, F.J., Lopez-Huertas, E., Palma, J.M., 2018. Plant superoxide dismutases: Function under abiotic stress conditions. In: Gupta, D., Palma, J., Corpas, F. (Eds), Antioxidants and antioxidant enzymes in Higher Plants;  Springer: Cham, Switzerland, 1–26.

    Dionisio-Sese, M.L., Tobita, S., 1998. Antioxidant responses of rice seedlings to salinity stress. Plant Science 135, 1–9.

    Falleh, H., Jalleli, I., Ksouri, R., Boulaaba, M., Guyot, S., Magne, C., Abdelly, C., 2012. Effect of salt treatment on phenolic compounds and antioxidant activity of two Mesembryanthemum edule provenances. Plant Physiology and Biochemistry 52, 1–8.

    Food and Agriculture Organization of the United Nations. 2021. Available online: http://www.fao.org/global-soil-partnership/ resources/highlights/detail/en/c/1412475/ (accessed on 18 July 2021).

    Foyer, C., Descourvieres, P., Kunert, K.J., 1994. Protection against oxygen radicals: an important defense mechanism studied in transgenic plant. Plant, Cell and Environment 17, 507–523.

    Gao, J.P., Chao, D.Y.,  Lin, H.X., 2007. Understanding abiotic stress tolerance mechanisms: recent studies on stress response in rice. Journal of integrative plant biology 49(6), 742–750.

    Gill, S.S., Tuteja, N., 2010. Reactive oxygen species and antioxidant machinery in abiotic stress tolerance in crop plants. Plant Physiology and Biochemistry 48, 909–930.

    Hakim, M.A., Juraimi, A.S., Hanafi, M.M., Ismail, M.R., Ahmad, S., Rafii, M.Y., Latif, M.A., 2014. Biochemical and anatomical changes and yield reduction in rice (Oryza sativa L.) under varied salinity regimes. BioMed Research International, ID 208584, https://doi.org/10.1155/2014/208584.

    Halliwell, B., 1987. Oxidative damage, lipid peroxidation, and antioxidant protection in chloroplasts. Chemistry and Physics of Lipids 44, 327–340

    Hasanuzzaman, M., Bhuyan, M.H.M.B., Anee, T.I., Parvin, K., Nahar, K., Mahmud, J.A., Fujita, M., 2019. Regulation of ascorbateglutathione pathway in mitigating oxidative damage in plants under abiotic stress. Antioxidants 8, 384.

    Hasanuzzaman, M., Bhuyan, M.H.M.B., Zulfiqar, F., Raza, A., Mohsin, S.M., Mahmud, J.A., Fujita, M.,  Fotopoulos, V., 2020. Reactive oxygen species and antioxidant defense in plants under abiotic stress: Revisiting the crucial role of a universal defense regulator. Antioxidants 9, 681.

    Heath, R.L., Packer, L., 1968. Photoperoxidation in isolated chloroplasts. Kinetics stoichiometry of fatty acid peroxidation. Archives of Biochemistry and Biophysics 12, 189–198.

    Hernandez, J.A., Jimenez, A., Mullineaux, P., Sevilla, F., 2000. Tolerance of pea (Pisum sativum L.) to long-term salt stress is associated with induction of antioxidant defences. Plant, Cell & Environment 23, 853–862.

    Ito, H., Hiraoka, N., Ohbayashi, A., Ohashi, Y., 1991. Purification and characterization of rice peroxidases. Agricultural and Biological Chemistry 55, 2445–2454.

    James, R.A., Blake, C., Byrt, C.S., Munns, R., 2011. Major genes for Na+ exclusion, Nax1 and Nax2 (wheat HKT1;4 and HKT1;5), decrease Na+ accumulation in bread wheat leaves under saline and waterlogged conditions, Journal of Experimental Botany 62(8), 2939–2947.

    Jiang., M., Zhang, J., 2001. Effect of abscisic acid on active oxygen species, antioxidative defense system and oxidative damage in leaves of maize seedlings. Plant and Cell Physiology 42, 1265–1273.

    Joseph, B., Jini, D., Sujatha, S., 2010. Biological and physiological perspectives of specificity in abiotic salt stress response from various rice plants. Asian Journal of Agricultural Sciences 2, 99–105.

    Joseph, E.A., Mohanan, K.V., Radhakrishnan, V.V., 2015. Effect of salinity variation on the quantity of antioxidant enzymes in some rice cultivars of north Kerala, India. Universal Journal of Agricultural Research 3(3), 89–105

    Kar, M., Mishra, D., 1976. Catalase, peroxidase and polyphenol oxidase activities during rice leaf senescence. Plant Physiology 57, 315–319

    Katsuhara, M., Otsuka, T., Ezaki, B., 2005. Salt stress-induced lipid peroxidation is reduced by glutathione S-transferase, but this reduction of lipid peroxides is not enough for a recovery of root growth in Arabidopsis. Plant Science 169, 369–373.

    Keutgen, A.J., Pawelzik, E., 2008. Quality and nutritional value of strawberry fruit under long term salt stress. Food chemistry 107, 1413–1420.

    Khan, M.H., Singha, L.B., Panda, S.K., 2002. Changes in antioxidant levels in Oriza sativa L roots subjected to NaCl salinity stress. Acta Physiologiae Plantarum 24, 145–148.

     Lee, D.H., Kim, Y.S., Lee, C.B., 2001. The inductive response of antioxidant response by salt stress in rice. Journal of Plant Physiology 158, 737–745

    Liebthal, M., Maynard, D., Dietz, K.J., 2018. Peroxiredoxins and redox signaling in plants. Antioxidants and Redox Signaling 28, 609–624.

    Lowry, O.H., Rosebrough, N.J., Farr, A., Randall, R.J., 1951. Protein measurement with the folin Phenol Reagent. Journal of Biological Chemistry 193, 256–275.

    Mano, J, Torii, Y., Hayashi, S., Takimoto, K., Matsui, K., Nakamura, K., Inze, A.D., Babiychuk, E., Kushnir, S., Asada, K., 2002. The NADPH: quinone oxidoreductase P1-z-crystallin in Arabidopsis catalyzes the alpha, beta-hydrogenation of 2-alkenals: detoxication of the lipid peroxide-derived reactive aldehydes. Plant and Cell Physiology 43, 1445–1455

    Meloni, D.A., Oliva, M.A., Martinez, C.A., Cambraia, J., 2003. Photosynthesis and activity of superoxide dismutase, peroxidase and glutathione reductase in cotton under salt stress. Environmental and Experimental Botany 49, 69–79.

    Mohammad, G.K., Mahmud, H., Yoshiyuki, M., Hoque Md, A., 2017. Antioxidant defense mechanisms of salinity tolerance in rice genotypes. Rice Science 24(3), 155–162

    Mori, H., Higo, K., Higo,H., Minobe, Y., Matsui H., Chiba S.,1992. Nucleotide and derived amino acid sequence of a catalase cDNA isolated from rice immature seeds. Plant Molecular Biology 18, 973–976.

    Munns, R., 2005. Genes and salt tolerance: bringing them together, New Phytologist 167(3), 645–663.

    Munns, R., Tester, M., 2008. Mechanisms of salinity tolerance. Annual Review of Plant Biology 59, 651–681

    Nakano, Y., Asada K., 1981. Hydrogen peroxide is scavenged by ascorbate specific peroxidase in spinach chloroplasts. Plant and Cell Physiology 22, 867–880.

    Pallavi, M., Kumari, B., Dubey, R.S., 2013. Differential responses of antioxidative defense system to prolonged salinity stress in salt-tolerant and salt-sensitive indica rice (Oryza sativa L.) seedlings. Protoplasma 250(1), 3–19.

    Panda, S.K., Khan, M.H., 2003. Salt stress influences lipid peroxidation and antioxidants in the leaf of an indica rice (Oryza sativa L). Physiology and Molecular Biology of Plants 9, 273–278.

    Parida, A.K., Das, A.B., Mohanty, P., 2004. Defense potentials to NaCl in a mangrove, Bruguiera parviflora: differential changes of isoforms of some antioxidative enzymes. Journal of Plant Physiology 161, 531–542.

    Peiris, B., Siegel, B., Siegel, S., 1991. The relation of electrolyte-induced peroxidase changes in salt-sensitive and salt-tolerant rice varieties to changes in other physiological parameters. In: Lobarzewski, J., Greppin, H., Penel, C., Gaspar, T. (Eds), Biochemical, molecular, and physiological aspects of plant peroxidases. University M. Curie-Sklodowska, Lublin, Poland and University of Geneva, Switzerland, 425–432. 

    Pereira, A., 2016. Plant abiotic stress challenges from the changing environment. Frontiers in Plant Science, 7, 1123. https://doi.org/10.3389/fpls.2016. 01123

    Rahnama, A.R., James, A., Poustini, K., Munns, R., 2010. Stomatal conductance as a screen for osmotic stress tolerance in durum wheat growing in saline soil, Functional Plant Biology 37(3), 255–263.

    Raza, A., Razzaq, A., Sundas, S., Mehmood, Zou, X.,  Zhang, X., Lv, Y., Xu, J., 2019. Impact of climate change on crops adaptation and strategies to tackle its outcome: A Review, Plants 8(2), 34.

    Rozema, J., Flowers, T., 2008.  Ecology: crops for a salinized world, Science 322(5907), 1478–1480.

    Sachdev, S., Ansari, S.A., Ansari, M.I., Fujita, M., Hasanuzzaman, M., 2021. Abiotic stress and reactive oxygen species: Generation, signaling, and defense mechanisms. Antioxidants 10, 277.

    Safeena, M.I.S., Bandara, D.C., 2006. Antioxidant repose of rice (Oryza sativa L.) varieties to salt stress at different growth stages. Tropical agricultural research 18(2), 1–12.

    Shalata, A., Tal, M., 1998. The effect of salt stress on lipid peroxidation and antioxidants in the leaf of the cultivated tomato and its wild salt tolerant relative Lycopersicon pennellii. Physiologia Plantarum 104, 69–174.

    Steel, R.G.D., Torrie, J.H., 1980. Principles and procedures of statistics. A biometrical approach. 2nd edition. McGraw-Hill, New York, USA, 20–90.

    Sun, X., Sun, M., Luo, X., Ding, X., Ji, W., Cai, H., Bai, X., Liu, X., Zhu, Y., 2013. A Glycine soja ABA-responsive receptor-like cytoplasmic kinase, GsRLCK, positively controls plant tolerance to salt and drought stresses. Planta 237(6), 1527–1545

    Surridge, C., 2004. Rice cultivation: feast or famine? Nature, 428, 360–361.

    Takemura, T., Hanagata, N., Dubinsky, Z., Karube, I., 2002. Molecular characterization and response to salt stress of mRNAs encoding cytosolic Cu/Zn superoxide dismutase and catalase from Bruguieragymnorrhiza. Trees - Structure and Function 16, 94–99.

    Uddin, M.I., Rashid, M.H., Khan, N., Perveen, M.F., Tai, T.H., Tanaka, K., 2007. Selection of promising salt tolerant rice mutants derived from cultivar ‘drew’ and their antioxidant enzymes activity under salt stress. Sabrao Journal of Breeding and Genetics 39, 89–98.

    Wang, R., Chen, S., Zhou, X., Shen, X., Deng, L., Zhu, H., Polle, A., 2008. Ionic homeostasis and reactive oxygen species control in leaves and xylem sap of two poplars subjected to NaCl stress. Tree Physiology28, 947–957.

    Wang, Y., Qu, G., Li, H., Wu, Y., Wang, C., Liu, G., Yan, C., 2010. Enhanced salt tolerance of transgenic poplar plants expressing a manganese superoxide dismutase from Tamarix androssowii. Molecular Biology Reports 37, 1119–1124.

    Wang, J., Huang, R., 2019. Modulation of ethylene and ascorbic acid on reactive oxygen species scavenging in plant salt response. Frontiers in Plant Science 10, 319.

    Willekens, H., Inze, D., Van Montagu, M., Van Camp, W., 1995. Catalases in plants. Molecular Breeding 1, 207–228

    Ying, H.C., Chen, Y.M., Huang, C.Y., 1995. Role of glutathione reductase and related enzymes in salt tolerance mechanism of soybean plants grown under salt stress condition. Taiwania 44, 21–34.

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