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Matricaria chamomilla is not a hyperaccumulator, but tolerant to cadmium stress
Authors:Jozef Kováčik  Jaroslav Tomko  Martin Bačkor  Miroslav Repčák
Affiliation:(1) Department of Botany, Institute of Biology and Ecology, Faculty of Science, P. J. Šafárik University, Mánesova 23, 041 67 Košice, Slovak Republic;(2) Department of Non-Ferrous Metals and Waste Treatment, Faculty of Metallurgy, Technical University, Letná 9, 042 00 Košice, Slovak Republic
Abstract:The influence of low (3 µM) and high (60 and 120 µM) cadmium (Cd) concentrations were studied on selected aspects of metabolism in 4-week-old chamomile (Matricaria chamomilla L.) plants. After 10 days’ exposure, dry mass accumulation and nitrogen content were not significantly altered under any of the levels of Cd. However, there was a significant decline in chlorophyll and water content in the leaves. Among coumarin-related compounds, herniarin was not affected by Cd, while its precursors (Z)- and (E)-2-β-d-glucopyranosyloxy-4-methoxycinnamic acids (GMCAs) increased significantly at all the levels of Cd tested. Cd did not have any effect on umbelliferone, a stress metabolite of chamomile. Lipid peroxidation was also not affected by even 120 µM Cd. Cd accumulation was approximately seven- (60 µM Cd treatment) to eleven- (120 µM Cd treatment) fold higher in the roots than that in the leaves. At high concentrations, it stimulated potassium leakage from the roots, while at the lowest concentration it could stimulate potassium uptake. The results supported the hypothesis that metabolism was altered only slightly under high Cd stress, indicating that chamomile is tolerant to this metal. Preferential Cd accumulation in the roots indicated that chamomile could not be classified as a hyperaccumulator and, therefore, it is unsuitable for phytoremediation.
Keywords:Cadmium  Coumarins  Malondialdehyde   Matricaria chamomilla   Lipid peroxidation  Potassium leakage
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