The effect of UV-C radiation and cytokinin on pea plants

  • V. V. Zhuk Institute of Cell Biology and Genetic Engineering of Nat. Acad. Sci. of Ukraine, Ukraine, 03143, Kyiv, Akad. Zabolotnoho str., 148 https://orcid.org/0000-0003-1966-7537
  • A. N. Mikheev Institute of Cell Biology and Genetic Engineering of Nat. Acad. Sci. of Ukraine, Ukraine, 03143, Kyiv, Akad. Zabolotnoho str., 148
  • L. G. Ovsyannikova Institute of Cell Biology and Genetic Engineering of Nat. Acad. Sci. of Ukraine, Ukraine, 03143, Kyiv, Akad. Zabolotnoho str., 148
Keywords: UV-C, Pisum sativum L., BAP, growth, photosynthetic pigments

Abstract

Aim. The effect of ultraviolet C (UV-C) radiation and cytokinin benzylaminopurine (BAP) on the growth and content of photosynthetic pigments in leaves of pea plants (Pisum sativum L.) was studied. Methods. Pea plants cultivar Aronis were irradiated by UV-C at a dose of 15 kJ/m2 with a power of 7 W/m2. Part of the non-irradiated plants was treated with BAP, part of the plants was treated with BAP one day before irradiation and part of plants were treated with BAP in one day after UV-C irradiation. Length and mass of plant shoots and roots were measured during the experiment. Content of photosynthetic pigments in leaves were determined during all time the experiment. Results. It was shown that pea plants growth delayed content of carotenoids in leaves reduced after the UV-C radiation of pea plants. Treatment of plants with BAP after the end of the UV-C radiation accelerated the restoration of photosynthetic pigments content. Conclusions. It was shown that UV-C radiation of pea plants by dose of 15 kJ/m2 caused inhibition of growth, decreasing photosynthetic pigments content in leaves. The BAP treatment after radiation stimulated the restoration of photosynthetic pigments content in the leaves.

References

Otake M., Okamoto Yoshiyama K., Yamaguchi H., Hidema J. 222 nm ultraviolet radiation C causes more severe damage to guard cells and epidermal cells of Arabidopsis plants than does 254 nm ultraviolet radiation. Photochem Photobiol Sci. 2021. Vol. 20 (12). P. 1675–1683. doi: 10.1007/s43630-021-00123-w.

Dawood M. F. A., Tahjib-Ul-Arif M., Sohag A. A. M., Latef A. A. H. A., Ragaey M. M. Mechanistic Insight of Allantoin in Protecting Tomato Plants Against Ultraviolet C Stress. Plants (Basel). 2020. Vol. 10 (1). P. 11. doi: 10.3390/plants10010011.

Urban L., Charles F., de Miranda M.R.A., Aarrouf J. Understanding the physiological effects of UV-C light and exploiting its agronomic potential before and after harvest. Plant physiology and biochemistry: PPB. 2016. Vol. 105. P. 1–11. doi: 10.1016/j.plaphy.2016.04.004.

Sokolova D. A., Halych T. V., Zhuk V. V., Kravets A. P. Involvement of UV-C-induced genomic instability in stimulation рlant long-term protective reactions. J. Plant Physiol. 2024. Vol. 293. P. 154171. doi: 10.1016/j.jplph.2024.154171.

Zhuk V., Sokolova D., Kravets A., Sakada V., Gluschenko L., Kuchuk, M. Efficiency of pre-sowing seeds by UV-C and X-ray exposure on the accumulation of antioxidants in inflorescence of plants of Matricaria chamomilla L. genotypes. Int. J. Sec. Metab. 2021. Vol. 8 (3). P. 186–194. doi: 10.21448/ijsm.889860.

Dawood M. F. A., Abu-Elsaoud A. M., Sofy M. R., Mohamed H. I., Soliman M. H. Appraisal of kinetin spraying strategy to alleviate the harmful effects of UVC stress on tomato plants. Environ Sci Pollut Res Int. 2022. Vol. 29 (35). P. 52378–52398. doi: 10.1007/s11356-022-19378-6.

Costa-Pérez A., Ferrer M. A., Calderón A. A. Combined Effects of Cytokinin and UV-C Light on Phenolic Pattern in Ceratonia siliqua Shoot Cultures. Agronomy. 2023. Vol. 13 (3). P. 621. doi: 10.3390/agronomy13030621.

Zhuk V. V., Mikheev A. N., Ovsyannikova L. G. Interaction of chronic ultraviolet radiation and cytokinin in adaptive reaction of pea plants. Factors in experimental evolution of organisms. 2020. Vol. 26. P. 196–201. doi: 10.7124/FEEO.v.26.1265. [in Ukrainian]

Zhuk V. V., Mikheev A. N., Ovsyannikova L. G. Adaptive effect of cytokinin on soybean plants under the action of chronic ultraviolet B radiation. Factors in experimental evolution of organisms. 2021. Vol. 28. P. 72–77. doi: 10.7124/FEEO.v28.1378. [in Ukrainian]

Zhuk V. V., Mikheev A. N., Ovsyannikova L. G. The response of pea plants to ultraviolet B radiation and cytokinin. Factors in experimental evolution of organisms. 2023. Vol. 32. P. 85–90. doi: 10.7124/FEEO.v32.1541. [in Ukrainian]

Lichtethaler H. K. Chlorophylls and carotenoids: Pigments of photosynthetic biomembranes. Methods Enzymol. 1987. Vol. 148. P. 350–382. doi: 10.1016/0076-6879(87)48036-1.