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首页> 外文期刊>Archives of Agronomy and Soil Science >The effects of cadmium and zinc interactions on the accumulation and tissue distribution of cadmium and zinc in tomato (Lycopersicon esculentum Mill.)
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The effects of cadmium and zinc interactions on the accumulation and tissue distribution of cadmium and zinc in tomato (Lycopersicon esculentum Mill.)

机译:镉和锌相互作用对番茄中镉和锌的积累和组织分布的影响(番茄番茄(Lycopersicon esculentum Mill)。)

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A pot experiment was conducted to investigate the effects of cadmium and zinc interactions on the accumulation and tissue distribution of cadmium and zinc in tomato (Lycopersicon esculentum Mill.). The results obtained in this study reveal that treatment of soil with Cd, Zn, or Cd-Zn did not improve plant growth as compared to control. The levels of concentrations of Cd and Zn in leaves, shoots and roots were determined. The highest concentration of Cd was 135.0mg kg-1 d.w. in the leaves, 57.0mg kg-1 d.w. in the shoots, and 210.0mg kg-1 d.w. in the roots; Zn concentration ranged from 186.0-776.0mg kg-1d.w. in leaves, 126.7-700.0mg kg-1 d.w. in shoots, and 320.0-2015.0mg kg-1 d.w. in roots of tomato plant. Significant inhibitory effects of Zn on Cd accumulation in all organs of tomato plant occurred only at toxic levels (100 and 1000mg kg-1 soil), but the reduction in Cd concentration did not improve shoot and root biomass suggesting that Zn concentration became the dominant factor affecting plant growth. An examination of Cd-Zn interactions and their transfer to soil-plant system indicate their synergistic effect. Increasing Cd and Zn concentrations in soil result in an increase in the accumulation of Cd or Zn in the plant tissues.
机译:进行了盆栽试验,研究了镉和锌相互作用对番茄中镉和锌的积累和组织分布的影响(番茄番茄)。在这项研究中获得的结果表明,与对照相比,用Cd,Zn或Cd-Zn处理土壤不会改善植物的生长。测定叶片,枝条和根中镉和锌的含量水平。镉的最高浓度为135.0mg kg-1d.w。在叶子中,57.0mg kg-1 d.w.和210.0mg kg-1 d.w.根源锌浓度范围为186.0-776.0mg kg-1d.w。在叶子中,126.7-700.0mg kg-1 d.w.和320.0-2015.0mg kg-1 d.w.在番茄植物的根中。锌对番茄各器官中Cd积累的显着抑制作用仅在有毒水平(100和1000mg kg-1土壤)下发生,但Cd浓度的降低并不能改善枝条和根系生物量,这表明Zn浓度成为主要因素。影响植物生长。 Cd-Zn相互作用及其转移到土壤-植物系统中的研究表明了它们的协同作用。土壤中Cd和Zn浓度的增加导致植物组织中Cd或Zn的积累增加。

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