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OtherWHOLE PLANT, ENVIRONMENTAL, AND STRESS PHYSIOLOGY
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Cadmium-Sensitive, cad1 Mutants of Arabidopsis thaliana Are Phytochelatin Deficient

R. Howden, P. B. Goldsbrough, C. R. Andersen, C. S. Cobbett
R. Howden
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P. B. Goldsbrough
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C. R. Andersen
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C. S. Cobbett
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Published April 1995. DOI: https://doi.org/10.1104/pp.107.4.1059

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Abstract

An allelic series of cad1, cadmium-sensitive mutants of Arabidopsis thaliana, was isolated. These mutants were sensitive to cadmium to different extents and were deficient in their ability to form cadmium-peptide complexes as detected by gel-filtration chromatography. Each mutant was deficient in its ability to accumulate phytochelatins (PCs) as detected by high-performance liquid chromatography and the amount of PCs accumulated by each mutant correlated with its degree of sensitivity to cadmium. The mutants had wild-type levels of glutathione, the substrate for PC biosynthesis, and in vitro assays demonstrated that each of the mutants was deficient in PC synthase activity. These results demonstrate conclusively the importance of PCs for cadmium tolerance in plants.

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Cadmium-Sensitive, cad1 Mutants of Arabidopsis thaliana Are Phytochelatin Deficient
R. Howden, P. B. Goldsbrough, C. R. Andersen, C. S. Cobbett
Plant Physiology Apr 1995, 107 (4) 1059-1066; DOI: 10.1104/pp.107.4.1059

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Cadmium-Sensitive, cad1 Mutants of Arabidopsis thaliana Are Phytochelatin Deficient
R. Howden, P. B. Goldsbrough, C. R. Andersen, C. S. Cobbett
Plant Physiology Apr 1995, 107 (4) 1059-1066; DOI: 10.1104/pp.107.4.1059
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Plant Physiology
Vol. 107, Issue 4
Apr 1995
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More in this TOC Section

  • In Vivo Ubiquinone Reduction Levels during Thermogenesis in Araceae
  • Identification of a Functional Homolog of the Yeast Copper Homeostasis Gene ATX1 from Arabidopsis
  • Protein Changes in Response to Progressive Water Deficit in Maize
Show more WHOLE PLANT, ENVIRONMENTAL, AND STRESS PHYSIOLOGY

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