The role of root organic acids in the tolerance of Festuca rubra to zinc, lead and cadmium

Jesús Gómez, S. García, E. Esteban, P. Zornoza, R. Carpena
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引用次数: 2

Abstract

Abstract Festuca rubra L. plants are pseudometallophytes colonizing abandoned Pb/Zn mine areas, successfully employed in phytostabilization. To study the contribution of low-molecular weight organic acids to metal tolerance, F. rubra plants were grown for three months in hydroponics with Cd (1.8, 18 and 36 µmol L−1), Pb (50, 250 and 500 µmol L−1) and Zn (0.3, 3 and 6 mmol L−1), separately, and in ternary combination (18 µmol L−1 Cd + 250 µmol L−1 Pb + 0.3 mmol L−1 Zn). The roots retained most of the metals but their distribution from shoot to root was altered when the plants were treated with the ternary combination. The main organic acids in roots were citrate and malate. At the lowest concentrations, the metals caused small reductions in biomass, had no effects on photosynthetic pigments nor on malondialdehyde, but led to increases in root organic acids. At higher concentrations, phytotoxic responses were observed, associated with a decline of citrate and malate in the roots.
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根有机酸在红羊茅耐锌、铅和镉中的作用
摘要红羊茅属植物是一种植于废弃铅锌矿区的假金属植物,已成功地用于植物稳定。为了研究低分子量有机酸对金属耐受性的影响,在水培条件下分别培养了Cd(1.8、18和36µmol L−1)、Pb(50、250和500µmol L−1)和Zn(0.3、3和6 mmol L−1),以及三元组合(18µmol L−1 Cd + 250µmol L−1 Pb + 0.3 mmol L−1 Zn)。根保留了大部分金属元素,但三元复合处理改变了金属元素从茎到根的分布。根中的有机酸主要为柠檬酸和苹果酸。在最低浓度下,金属引起生物量的少量减少,对光合色素和丙二醛没有影响,但导致根部有机酸增加。在较高浓度下,观察到植物毒性反应,与根部柠檬酸盐和苹果酸盐的下降有关。
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