Cation exchange capacity of plants primary cells walls as factor of accumulation nonbioqenic iones and its modification

Authors

  • A. P. Kravetz Institute of Cell Biology and Genetic Engineering, NAS of Ukraine 148, Akademika Zabolotnogo Str., Kyiv, Ukraine, 03680 Author
  • N. B. Gumennaya Institute of Plant Physiology and Genetics, NAS of Ukraine 31/17, Vasylkivska, Kyiv, Ukraine, 03022 Author
  • L. M. Kuzmenko Institute of Cell Biology and Genetic Engineering, NAS of Ukraine 148, Akademika Zabolotnogo Str., Kyiv, Ukraine, 03680 Author
  • M. M. Ermak Institute of Cell Biology and Genetic Engineering, NAS of Ukraine 148, Akademika Zabolotnogo Str., Kyiv, Ukraine, 03680 Author

DOI:

https://doi.org/10.7124/bc.0003E6

Abstract

Osmotic and gamma-radiation stress alterations of state primary cells walls of Pisum sativum have been investigation. Significant increasing cation exchange capacity have been demonstrated. Correlation between levels of cation exchange capacity and radionuclides accumulation have been demonstrated.

References

Microelements: delivery, transport and physiological functions in plants. Kiev Naukova Dumka. 1987. 180 p.

Salyayev RK, Shvetsova IV. Adsorption properties of isolated plant cell walls. Fiziologiia rasteniy. 1969;16(3):447-51.

Knight AH, Crooke WM, Inkson RH. Cation-exchange capacities of tissues of higher and lower plants and their related uronic acid contents. Nature. 1961;192:142-3.

Kravetz A. Physiological factors absorption nonbiogenic ions by higher plants. Physiol Plain. 1992; 85(5):238-9.

Iraki NM, Bressan RA, Hasegawa PM, Carpita NC. Alteration of the physical and chemical structure of the primary cell wall of growth-limited plant cells adapted to osmotic stress. Plant Physiol. 1989;91(1):39-47.

Palkina TA. Effect radiostimulation of wheat seeds and resistance to lodging. Probl. Appl. Radiobiology plants. Chernihiv, 1990.

Dmitriev AP, Grodzinsky DM. The effect of ionizing radiation on the induction of defense reaction and resistance of onion to diseases. Doklady Akad Nauk Ukr SSR. Ser B. 1986;9:62-4.

Anthropogenic radionuclide anomaly and plants. Ed. DM Grodzinski. Kiev: LYBID, 1991. 189 p.

Stassart JM, Neirinckx L, Dejaegere R. The interactions between monovalent cations during their adsorption on isolated cell walls and adsorption by intact barley roots. Ann bot. 1981; 47(5):647-52.

Dontsov MB. Ion exchange properties of roots and their relationship with the mineral nutrition of plants. Agrokhimiya. 1976; 9: 142-51.

Dontsov MB. The method of studying ion exchange capacity of roots and other plant. Dopovidi Akad Nauk UkrSSSR. Ser B. 1977;1: 73-5.

Blamey FPC, Edmeades DC, Wheeler DM. Role of root cation-exchange capacity in differential aluminum tolerance of lotus species. J Plant Nutr. 1990;13(6):729–44. ttp://

Kurskiy MD, Kosterin SA, Rybal'chenko V.I. Biochemical Kinetics.. Kiev: Vishcha shk., 1977. 261 s.

Min'ko SS, Lusinov IA, Voronov AS. The structure adsorbtion surface films of poly(meth)acrylates. Dopovidi Akad Nauk Ukrainy. 1993;(9):148-52.

Published

1995-03-20

Issue

Section

Biopolymers and Cell