Effects of cadmium hyperaccumulation on physiological characteristics of Sedum alfredii Hance (Crassulaceae)

Sedum alfredii is a newly found cadmium (Cd)-hyperaccumulator, but there have been no detailed studies on its physiological responses when Cd is hyperaccumulated. Leaf expansion and root growth were inhibited significantly at high Cd concentrations, and Cd was suggested to suppress cell expansion an...

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Veröffentlicht in:Plant science (Limerick) 2005-10, Vol.169 (4), p.737-745
Hauptverfasser: Zhou, Wenbin, Qiu, Baosheng
Format: Artikel
Sprache:eng
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Zusammenfassung:Sedum alfredii is a newly found cadmium (Cd)-hyperaccumulator, but there have been no detailed studies on its physiological responses when Cd is hyperaccumulated. Leaf expansion and root growth were inhibited significantly at high Cd concentrations, and Cd was suggested to suppress cell expansion and induce senescence. Chlorophyll fluorescence analysis indicated that its photosynthesis appeared to be unaffected. Decreased F v/ F m correlated well with decreased water content of leaves. Cd treatments were demonstrated to result in an increase of chlorophyll content. The chlorophyll a/ b ratio showed a reduction with increasing Cd concentrations. The Cd content peaked and reached a maximum of 11,000 mg kg −1 in leaves at 600 μM Cd. It was almost saturated at 600 μM Cd in stems and roots, and then was, respectively, up to a maximum of 5300 and 3100 mg kg −1 at 800 μM Cd. Fe concentrations in leaves, stems and roots increased significantly in the presence of Cd. Increasing Cd concentration might induce the expression of Fe transporter. This could have important implications both for human nutrition and for phytoremediation of metal contamination. Other elements (K, Ca, Zn and P) were distributed differently. Taking together, these results suggested that S. alfredii could be a good new model to investigate the mechanism of metal hyperaccumulation.
ISSN:0168-9452
1873-2259
DOI:10.1016/j.plantsci.2005.05.030