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Articles

Salicylic acid induces amelioration of chromium toxicity and affects antioxidant enzyme activity in Sorghum bicolor L.

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  • Adriano S, Angelo CT, Bartolomeo D, Cristos X. 2005. Infuence of water deficit and rewatering on the components of the ascorbate-glutathione cycle in four interspecific Prunus hybrids. Plant Sci. 169(2):403–412.
  • Al-Hakimi AMA, Hamada AM. 2001. Counteraction of salinity stress on wheat plants by grain soaking in ascorbic acid, thiamin or sodium salicylate. Biol Plantarum. 44:253–261.
  • Ali H, Khan E, Sajad MA. 2013. Phytoremediation of heavy metals—concepts and applications. Chemosphere. 91(7):869–881.
  • Ali NA, Ater M, Sunahara G. L, Robidoux PY. 2004. Phytotoxicity and bioacuumulation of copper and chromium using barley (Hordeum vulgare L.) in spiked artificial and natural forest soils. Ecotoxicol Environ Safety. 57(3):363–374.
  • Apel K, Hirt H. 2004. 'Reactive oxygen species: metabolism, oxidative stress, and signal transduction. Annu Rev Plant Biol. 55(1):373–399.
  • Arfan M, Athar HR, Ashraf M. 2007. Does exogenous application of salicylic acid through the rooting medium modulate growth and photosynthetic capacity in two differently adapted spring wheat cultivars under salt stress. Journal Plant Physiol. 164(6):685–694.
  • Barth C, Moeder W, Klessig DF, Conklin PL. 2004. The timing of senescence and response to pathogens is altered in the ascorbate-deficient arabidopsis mutant vitamin c-1. Plant Physiol. 134(4):1784–1792.
  • Branzini A, Gonzalez RS, Zubillaga M. 2012. Absorption and translocation of copper, zinc and chromium by Sesbania virgata. J. Environ. Man. 102:50–54.
  • Chew O, Whelan J, Millar AH. 2003. Molecular definition of the ascorbate-glutathione cycle in Arabidopsis mitochondria reveals dual targeting of antioxidant defenses in plants. J Biol Chem. 278(47):46869–46877.
  • Dipierro N, Mondelli D, Paciolla C, Brunetti G, Dipierro S. 2005. Changes in the ascorbate system in the response of pumpkin (Cucurbita pepo L.) roots to aluminium stress. J Plant Physiol. 162(5):529–536.
  • Diwan H, Ahmad A, Iqbal M. 2008. Genotypic variation in the phytoremediation potential of Indian mustard for chromium. Environ Man. 41:734–741.
  • Duan J, Li J, Guo S, Kang Y. 2008. Exogenous spermidine affects polyamine metabolism in salinity-stressed Cucumis sativus roots and enhances short-term salinity tolerance. J Plant Physiol. 165(15):1620–1635.
  • Elhassan EH, Elkheir EMS, Diab EEE, Osman GAM. 2016. Salicylic acid enhanced phytoremediation of lead by maize (Zea mays) plant. Int J Eng Res Sci. 2(1):4–10.
  • Foyer CH, Lopez-Delgado H, Dat JF, Scott IM. 1997. Hydrogen peroxide- and glutathione-associated mechanisms of acclimatory stress tolerance and signalling. Physiol Plant. 100(2):241–254.
  • Gajalakshmi S, Iswarya V, Ashwini R, Divya G, Mythili S, Sathiavelu A. 2012. Evaluation of heavy metals in medicinal plants growing in Vellore District. Eur J Exp Biol. 2(5):1457–1461.
  • Ghani A, Ahmed I, Mustafa IKIA. Rehman AU and Muhammad N. 2015. Amelioration of lead toxicity in Pisum sativum (L.) by foliar application of salicylic acid. J Enviorn Anal Toxicol. 5(4):114–121.
  • Gil-Amado JA, Gomez-Jimenez MC. 2012. Regulation of polyamine metabolism and biosynthetic gene expression during olive mature-fruit abscission. Planta. 235(6):1221–1237.
  • Grantz AA, Brummell DA, Bennett AB. 1995. Ascorbate free radical reductase mRNA levels are induced by wounding. Plant Physiol. 108(1):411–418.
  • Groppa MD, Benavides MP. 2008. Polyamines and abiotic stress: recent advances. Amino Acids. 34(1):35–45.
  • Groppa MD, Benavides MP, Tomaro ML. 2003. Polyamine metabolism in sunflower and wheat leaf discs under cadmium or copper stress. Plant Sci. 164(2):293–299.
  • Hayat Q, Hayat S, Irfan M, Ahmad A. 2010. Effect of exogenous salicylic acid under changing environment: a review. Environ Exp Bot. 68(1):14–25.
  • Hayat Q, Hayat Irfan SM, Ahmad A. 2010. Effect of exogenous salicylic acid in radish (Raphanus sativus). Int J Agric Biol. 15:547–552.
  • Jozefczak M, Remans T, Vangronsveld J, Cuypers A. 2012. Glutathione is a key player in metal-induced oxidative stress defenses. IJMS. 13(3):3145–3175.
  • Kim NH, Kim BS, Hwang BK. 2013. Pepper arginine decarboxylase is required for polyamine and gamma-aminobutyric acid signaling in cell death and defense response. Plant Physiol. 162(4):2067–2083.
  • Kumar D, Chaplot PC. 2015. Effect of multicut forage sorghum genotypes and fertility levels on nutrient uptake and soil nutrient balance. Forage Res. 41:50–51.
  • Lee J, Sperandio V, Frantz DE, Longgood J, Camilli A, Phillips MA, Michael AJ. 2009. An alternative polyamine biosynthetic pathway is widespread in bacteria and essential for biofilm formation in Vibrio cholera. J Biol Chem. 284(15):9899–9907.
  • Lowry OH, Rosebrough NJ, Farr AL, Randall RJ. 1951. Protein measurement with the folin phenol reagent. Biol Chem. 193:265–275.
  • Mallick S, Sinam GK, Mishra R, Sinha S. 2010. Interactive effects of Cr and Fe treatments on plants growth, nutrition and oxidative status in Zea mays (L). Ecotoxicol Environ Safety. 73(5):987–995.
  • Manaa A, Gharbi E, Mimouni H, Wasti S, Aschi-Smiti S, Lutts S, Ben Ahmed H. 2014. Simultaneous application of salicylic acid and calcium improves salt tolerance in two contrasting tomato (Solanum lycopersicum) cultivars. South Afr J Bot. 95:32–39.
  • Matewally A, Finkemeir I, Georgi M, Dietz KJ. 2003. Salicylic acid alleviates the cadmium toxicity in barley seedlings. Plant Physiol. 132:272–281.
  • Mir BA, Khan TA, Fariduddin Q. 2015. 24-epibrassinolide and spermidine modulate photosynthesis and antioxidant systems in Vigna radiata under salt and zinc stress. Int J Adv Res. 3:592–608.
  • Mittler R. 2002. Oxidative stress, antioxidants and stress tolerance. Trends Plant Sci. 7(9):405–410.
  • Mohsenzadeh S, Shahrtash M, Mohabatkar H. 2011. Interactive effects of salicylic acid and by preventing oxidative stress in roots of Medicago sativa. Environ Exp Bot. 65:27–34.
  • Nagajyoti PC, Lee KD, Sreekanth TVM. 2010. Heavy metals, occurrence and toxicity for plants: a review. Environ Chem Lett. 8(3):199–216.
  • Nakano Y, Asada K. 1981. Hydrogen peroxide is scavenged by ascorbate – specific peroxidase in spinach chloroplasts. Plant Cell Physiol. 22–25.
  • Nath K, Singh DH, Shyam S, Sharma YK. 2008. Effect of chromium and tannery effluent toxicity on metabolism and growth in cowpea (Vigna sinensis L. SaviexHassk) seedling. Res Environ Life Sci. 1(3):91–94.
  • Pal M, Horvath E, Janda T, Paldi E, Szalai G. 2005. Cadmium stimulates the accumulation of salicylic acid and its putative precursors in maize (Zea mays) plants. Physiol Plant. 125(3):356–364.
  • Panda SK. 2007. Chromium-mediated oxidative stress and ultrastructural changes in root cells of developing rice seedlings. J. Plant Physiol. 164(11):1419–1428.
  • Pandey V, Dixit V, Shyam R. 2009. Chromium effect on ROS generation and detoxification in pea (Pisum sativum) leaf chloroplasts. Protoplasma. 236(1–4):85–95.
  • Parashar A, Yusuf M, Fariduddin Q, Ahmad A. 2014. Salicylic acid enhances antioxidant system in Brassica juncea grown under different levels of manganese. Int J Biol Macromol. 70:551–558.
  • Popova LP, Maslenkova LT, Yordanova RY, Ivanova AP, Krantev AP, Szalai G, Janda T. 2009. Exogenous treatment with salicylic acid attenuates cadmium toxicity in pea seedlings. Plant Physiol Biochem. 47(3):224–231.
  • Raza SH, Shafiq F. 2013. Exploring the role of salicylic acid to attenuate cadmium accumulation phytochelatin synthesis in Zea mays during Cd stress. Turk J Bot. 37:708–714.
  • Rider JE, Hacker A, Mackintosh CA, Pegg AE, Woster PM, Casero RA. 2007. Spermine and spermidine mediate protection against oxidative damage caused by hydrogen peroxide. Amino Acids. 33(2):231–240.
  • Roe JH. 1964. 'Chemical determination of ascorbic, dehyroascorbic and diketo gluconic acids. In: Glick D, editor. Methods in biochemical analysis'.), New York: Inter – Science. p. 115–139.
  • Shannon LM, Key E, Law JY. 1966. Peroxidase isoenzymes from horse radish roots: isolation and physical properties. J Biol Chem. 241:2166–2172.
  • Sharma DC, Chatterjee C, Sharma CP. 1995. Chromium accumulation by barley seedlings (Hordeum vulgare L,). J Exp Bot. 1995:25241–25251.
  • Sharma DC, Pant RC. 1994. Chromium uptake: its effects on certain plant nutrients in maize (Zea mays L. cv. Ganga 5). J Environ Sci Health. 29:941–948..
  • Sheetal KR, Singh SD, Anand A, Prasad S. 2016. Heavy metal accumulation and effects on growth, biomass and physiological processes in mustard. Ind J Plant Physiol. 21(2):219–223.
  • Sihag S, Wadhwa N, Joshi UN. 2016. Chromium toxicity affects antioxidant enzyme activity in sorghum bicolor (L). Forage Res. 42(1):30–35.
  • Silveira V, de Vita AM, Macedo AF, Dias MFR, Floh EIS, Santa-Catarina C. 2013. Morphological and polyamine content changes in embryogenic and nonembryogenic callus of sugarcane. Plant Cell Tiss Organ Cult. 114(3):351–364.
  • Singh HP, Mahajan P, Kaur S, Batish DR, Kohli RK. 2013. Chromium toxicity and tolerance in plants. Environ Chem Lett. 11(3):229–254.
  • Singh I, Shah K. 2015. Evidences for suppression of cadmium induced oxidative stress in presence of sulphosalicylic acid in rice seedlings. Plant Growth Regul. 76(1):99–110.
  • Singh S, Parihar P, Singh R, Singh PV, Prasad MS. 2016. Heavy metal tolerance in plants: role of transcriptomics, proteomics, metabolomics and ionomics. Front Plant Sci. 6:1143.
  • Sinha P, Shukla AK, Sharma YK. 2015. Amelioration of heavy-metal toxicity in cauliflower by application of salicylic acid. J Soil Sci Plant Anal. 46(10):1309–1319.
  • Sinha SK, Srivastava HS, Tripathi RD. 1972. Influence of some growth regulators and cations on inhibition of chlorophyll biosynthesis by lead in maize. Bill. Env. Contamin. Toxic. 51:241–246.
  • Strobel NE, Kuc A. 1995. Chemical and biological inducers of systemic acquired resistance to pathogens protect cucumber and tobacco from damage caused by paraquat and cupric loride. Phytopathology. 85(10):1306–1310.
  • Subrahmanyam D. 2008. 'Effects of chromium toxicity on leaf photosynthetic characteristics and oxidative changes in wheat (Triticum aestivum L.). Photosynthetica. 46(3):339–345.
  • Surekha, Duhan JS. 2012. Chromium stress on peroxidase, ascorbate peroxidase and acid invertase in pea (Pisum sativum L.) seedling. International J Biotech and Molecular Biology Res. 32(2):15–21.
  • Szalai GA, Krantev R, Yordanova LP, Popova T. Janda 2013. Influence of salicylic acid on phytochelatin synthesis in Zea mays during Cd stress. Turk J Bot. 37:708–714.
  • Tabor CW, Tabor H. 1984. Polyamines. Annu Rev Biochem. 5:749–790.
  • Tao S, Sun L, Ma C, Li L, Li G, Hao L. 2013. Reducing basal salicylic acid enhances Arabidopsis tolerance to lead or cadmium. Plant Soil. 372(1–2):309–318.
  • Tewari A, Singh R, Singh NK, Rai UN. 2008. Amelioration of municipal sludge by Pistia stratioes L.: role of antioxidant enzymes in detoxification of metals. Biores Tech. 99(18):8715–8721.
  • Tisi A, Federico R, Moreno S, Lucretti S, Moschou PN, Roubelakis-Angelakis KA, Angelini R, Cona A. 2011. Perturbation of polyamine catabolism can strongly affect root development and xylem differentiation. Plant Physiol. 157(1):200–215.
  • Tripathi DK, Singh VP, Kumar D, Chauhan DK. 2012. Impact of exogenous silicon addition on chromium uptake, growth, mineral elements, oxidative stress, antioxidant capacity, and leaf and root structures in rice seedlings exposed to hexavalent chromium. Acta Physiol Plant. 34(1):279–289.
  • Valko M, Morris H, Cronin MTD. 2005. Metals, toxicity and oxidative stress. Curr Med Chem. 12(10):1161–1208.
  • Vazirimehr M, Rigi K. 2014. Effect of salicylic acid in agriculture. Int J Plant Animal Environ Sci. 4(2):291.
  • Vijaya HM, Godara RK, Singh S, Sharma N. 2017. Effect of exogenous application of micronutrients on growth and yield of Kinnow mandarin under semi-arid zone of Haryana. J Pharmacogn and Phytochem. 6(4):733–735.
  • Volland S, Bayer E, Baumgartner V, Andosch A, Lutz C, Sima E, Lutz-Meindl U. 2014. Physiology rescue of heavy metal effects on cell physiology of the algal model system Micrasterias by divalent ions. J Plant Physiol. 171(2):154–163.
  • Wuana RA, Okieimen FE. 2011. Heavy metals in contaminated soils: a review of sources, chemistry, risks and best available strategies for remediation. ISRN Ecology. 402647–402620.
  • Yamaguchi K, Takahashi Y, Berberich T, Imai A, Takahashi T, Michael AJ, Kusano T. 2007. A protective role for the polyamine spermine against drought stress in Arabidopsis. Biochem Biophys Res. Co. 352(2):486–490.
  • Yang W-J, Rich PJ, Axtell JD, Wood KV, Bonham CC, Ejeta G, Mickelbart MV, Rhodes D. 2003. Genotypic variation for glycine betaine in Sorghum. Crop Sci. 43(1):162–169.
  • Yusuf M, Hasan SA, Ali B. 2008. Effect of salicylic acid on salinity induced changes in Brassica juncea.–J Integr Plant Biol. 50:1–4.
  • Zeid IM. 2001. Responses of Phaseolus vulgaris to chromium and cobalt treatments. Biologia Plantarum. 44(1):111–115.
  • Zhou ZS, Guo K, Elbaz AA, Yang ZM. 2011. Salicylic acid alleviates mercury toxicity under changing environment': a review. Environ Exp Bot. 68:14–25.
  • ZivKovic J, Razic S, Arsenijevic J, Maksimovic Z. 2012. Heavy metal contents Zn Veronica species and soil from mountainous areas in Serbia. J Serb Chem Soc. 77(7):959–970.

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