Effect of sodium salicylate treatment on physiological and biochemical parameters of wheat seedlings under the influence of heavy metals
https://doi.org/10.21285/2227-2925-2020-10-2-274-283
Abstract
About the Author
G. A. AbilovaRussian Federation
Cand. Sci. (Biology), Associate Professor, Department of Plant and Theory of Evolution
43a Gadzieva St., Makhachkala 367000, Russian Federation
References
1. Krämer U. Meta l hyperaccumulation in plants. Annual Review of Plant Biology. 2010;61:517–534. https://doi.org/10.1146/annurev-arplant-042809-112156
2. Titov AF, Kaznina NM, Talanova VV. Heavy metals and plants. Petrozavodsk: Izdatel'stvo Karel'skogo nauchnogo tsentra RAN; 2014. 194 p. (In Russian)
3. Baker AJM, Walker PL. Physiological responses of plants to heavy metals and the quantification of tolerance and toxicity. Chemical Speciation & Bioavailability. 1989;1(1):7–17. https://doi.org/10.1080/09542299.1989.11083102
4. Makarova EA, Soldatov SA. Effects of heavy metals on plant growth and development of alfalfa (Medicago varia T. Martyn). Izvestia Penzenskogo gosudarstvennogo pedagogicheskogo universiteta imeni V.G. Belinskogo. 2012;29:62–68. (In Russian)
5. Maksymiek W. Signaling responses in plants to heavy metal stress. Acta Physiologiae Plantarum. 2007;29:177–198. https://doi.org/10/1007/s11738-007-0036-3
6. Chao Y-Y, Chen C-Y, Huang W-D, Kao CH. Salicylic acid-mediated hydrogen peroxide accumulation and protection against Cd toxicity in rice leaves. Plant and Soil. 2010. Vol. 329. Issue 1. P. 327–337. https://doi.org/10.1007/s11104-009-0161-4
7. Fenko AA, Repkina NS, Talanova VV. Salicylic acid effect on the cold tolerance of cucumber seedlings. Trudy Karel'skogo nauchnogo tsentra RAN. 2015;11:26–34. (In Russian) https://doi.org/10.17076/eb188
8. Kolupaev YuE., Yastreb TO. Stressprotective effects of salicylic acid and its structural analogues. Fiziologiya i biokhimiya kul'turnykh rastenii = Physiology and Biochemistry of Cultivated Plants. 2013;45(2):113–126. (In Russian)
9. Heath RL, Packer L. Photoperoxidation in isolated chloroplasts. 1. Kinetics and stoichiometry of fatty acid peroxidation. Archives of Biochemistry and Biophysics. 1968;125(1):189–198. http://dx.doi.org/10.1016/0003-9861(68)90654-1
10. Bates LS. Rapid determination of free proline for stress studies. Plant Soil. 1973;39:205–207. https://doi.org/10.1007/BF00018060
11. Giannopolitis CN, Ries SK. Superoxide dismutase. 1. Occurrence in higher plants. Plant Physiology. 1977;59(2):309–314.
12. Erofeeva EA, Naumova MM. Influence of cadmium sulfate in a wide range of concentrations on physiological and biochemical parameters of wheat seedlings. Vestnik Nizhegorodskogo universiteta im. N.I. Lobachevskogo. 2010;2:508–512. (In Russian)
13. Alybaeva RA. Resistance of winter wheat genotypes to heavy metals. Byulleten' gosudarstvennogo Nikitskogo botanicheskogo sada = Bulletin of the State Nikitsky Botanical Gardens. 2009;99:56–60. (In Russian)
14. Michailova ID, Lukatkin AS. Lipid Peroxidation in Cucumber and Radish Seedlings Affected by Heavy Metals. Izvestiya Saratovskogo universiteta. Novaya seriya. Seriya. Himiya. Biologiya. Ekologiya = Izvestiya of Saratov University. New series. Series: Chemistry. Biology. Ecology. 2016;36(2):206–210. (In Russian) https://doi.org/10.18500/1816-9775-2016-16-2-206-210
15. Abilova GA. Effect of cadmium and lead ions on the growth and content of proline in plants of triticale (Triticosecale Wittm. ex А Camus). Trudy Karel'skogo nauchnogo tsentra RAN. Seriya: Eksperimental'naya biologiya. 2016;11:27–33. (In Russian) https://doi.org/10.17076/eb424
16. Kolupaev YuE, Vayner AA, Yastreb TO. Proline: physiological functions and regulation of its content in plants under stress conditions. Vestnik Khar'kovskogo natsional'nogo agrarnogo Universiteta. Seriya: Biologiya = The bulletin of Kharkiv national agrarian university. Series Biology. 2014;2:6–22. (In Russian)
17. Baranenko VV. Superoxide dismutase in plant cells. Tsitologiya. 2006;48(6):465–471. (In Russian)
18. Gladkov EA, Gladkova OV. Effect of zinc as an adverse ecological factor on the herbaceous plants of urban ecosystems. Izvestiya Samarskogo nauchnogo tsentra Rossiiskoi akademii nauk. 2018;20(5)499–500. (In Russian) https://doi.org/10.24411/1990-5378-2018-00121
19. Repkina NS, Ignatenko AA, Panfilova KM, Titov AF, Talanova VV. Tthe dynamics of superoxid dismutase activity and its gene expression in wheat leaves during cold adaptation. Trudy Karel'skogo nauchnogo tsentra RAN. 2017;5:89–98. (In Russian) https://doi.org/10.17076/eb573
20. Sazanova KA, Bashmakov DI, Lukatkin AS. Generation of superoxide anion in leaves of seedlings under long,term exposure to heavy metals. Trudy Karel'skogo nauchnogo tsentra RAN. 2012;2:119–124. (In Russian)
Review
For citations:
Abilova G.A. Effect of sodium salicylate treatment on physiological and biochemical parameters of wheat seedlings under the influence of heavy metals. Proceedings of Universities. Applied Chemistry and Biotechnology. 2020;10(2):274-283. (In Russ.) https://doi.org/10.21285/2227-2925-2020-10-2-274-283