Zinc hyperaccumulation and cellular distribution in Arabidopsis halleri
- 1 May 2000
- journal article
- research article
- Published by Wiley in Plant, Cell & Environment
- Vol. 23 (5) , 507-514
- https://doi.org/10.1046/j.1365-3040.2000.00569.x
Abstract
Although Arabidopsis halleri (=Cardaminopsis halleri) is known as a Zn hyperaccumulator, there have been no detailed studies on Zn accumulation, tolerance and cellular distribution in this species. In a hydroponic experiment, A. halleri grew healthily with Zn concentrations varying from 1 to 1000 μM, without showing phytotoxicity or reduction in root or shoot dry weights. The concentration of Zn in the shoots increased from 300 μg g−1 dry weight in the 1 μM Zn treatment to 32 000 μg g−1 in the 1000 μM Zn treatment. Approximately 60% of the total Zn in the shoots were water‐soluble, and there was no evidence of Zn and P co‐precipitation. Both citric and malic acid concentrations in the shoots were not significantly affected by the Zn treatments, whereas in the roots there was a positive response in both organic acids to increasing Zn in solution. Cellular distribution of Zn, Ca and K in frozen hydrated leaf tissues was examined using energy‐dispersive X‐ray microanalysis. Zinc was sequestered in the base of trichomes, whereas the middle and upper parts of trichomes were highly enriched with Ca. Mesophyll cells appeared to have more Zn than the epidermis, probably because the latter were very small in size. Similarities and differences between A. halleri and the other well‐known Zn hyperaccumulator, Thlaspi caerulescens, are discussed.Keywords
This publication has 24 references indexed in Scilit:
- Molecular physiology of zinc transport in the Zn hyperaccumulator Thlaspi caerulescensJournal of Experimental Botany, 2000
- Zinc tolerance and hyperaccumulation are genetically independent charactersProceedings Of The Royal Society B-Biological Sciences, 1999
- Zinc distribution and excretion in the leaves of the grey mangrove, Avicennia marina (Forsk.) VierhEnvironmental and Experimental Botany, 1999
- Zinc Ligands in the Metal Hyperaccumulator Thlaspi caerulescens As Determined Using X-ray Absorption SpectroscopyEnvironmental Science & Technology, 1999
- Altered Zn Compartmentation in the Root Symplasm and Stimulated Zn Absorption into the Leaf as Mechanisms Involved in Zn Hyperaccumulation in Thlaspi caerulescensPlant Physiology, 1998
- PHYTOREMEDIATIONAnnual Review of Plant Biology, 1998
- Solubility of zinc and interactions between zinc and phosphorus in the hyperaccumulator Thlaspi caerulescensPlant, Cell & Environment, 1998
- Zinc and Cadmium Uptake by Hyperaccumulator Thlaspi caerulescens Grown in Nutrient SolutionSoil Science Society of America Journal, 1995
- Heavy metal accumulation and tolerance in British populations of the metallophyte Thlaspi caerulescens J. & C. Presl (Brassicaceae)New Phytologist, 1994
- Mechanism of phosphorus‐induced zinc deficiency in cotton. III. Changes in physiological availability of zinc in plants Is mailPhysiologia Plantarum, 1987