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POLY(GAMMA-GLUTAMYLCYSTEINYL)GLYCINES OR PHYTOCHELATINS AND THEIR ROLE IN CADMIUM TOLERANCE OF SILENE-VULGARIS
被引:75
|作者:
VERKLEIJ, JAC
KOEVOETS, P
VANTRIET, J
BANK, R
NIJDAM, Y
ERNST, WHO
机构:
[1] FREE UNIV AMSTERDAM, FAC CHEM, BIOCHEM LAB, 1081 HV AMSTERDAM, NETHERLANDS
[2] FREE UNIV AMSTERDAM, FAC MED, INST HUMAN GENET, 1081 HV AMSTERDAM, NETHERLANDS
来源:
关键词:
POLY(GAMMA-GLUTAMYLCYSTEINYL)GLYCINES;
PHYTOCHELATINS;
CADMIUM;
METAL TOLERANCE-MECHANISM;
LABILE-SULFIDE;
SILENE-VULGARIS;
D O I:
10.1111/j.1365-3040.1990.tb01981.x
中图分类号:
Q94 [植物学];
学科分类号:
071001 ;
摘要:
The effect of cadmium on growth of Cd-tolerant and -sensitive plants of Silene vulgaris and on the production of metal-binding compounds in both types of plants was studied. The Cd-content of the roots and the Cd-root/shoot ratio was higher in Cd-tolerant plants. A Cd-binding compound (Cd-BC) with an apparent molecular mass of 14.5 kD was isolated from the roots of Cd-tolerant and -sensitive plants, grown in 40 mmol m-3 Cd for 21 d. More than 60% of the total Cd in the roots was associated with this compound. Determination of the amino-acid content of the purified Cd-containing compound from both types of plants showed that they possessed a similar amino-acid composition to that of phytochelatins. Only the bis- and tris-forms were present. The amount of Cd and sulphide associated with phytochelatin was greater in tolerant plants than in sensitive ones suggesting that an increased sulphide content of complexes containing peptide, sulphide and Cd may form the basis of evolved Cd-tolerance in Silene vulgaris.
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页码:913 / 921
页数:9
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