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营养液中不同 Cd:Zn 比例下生菜对镉的根系吸收和地上部积累。

Root uptake and shoot accumulation of cadmium by lettuce at various Cd:Zn ratios in nutrient solution.

机构信息

Department of Soil Sciences, College of Agriculture, Isfahan University of Technology, 84156-83111 Isfahan, Iran.

Department of Soil Sciences, College of Agriculture, Isfahan University of Technology, 84156-83111 Isfahan, Iran.

出版信息

Ecotoxicol Environ Saf. 2018 Feb;148:441-446. doi: 10.1016/j.ecoenv.2017.10.045. Epub 2017 Nov 6.

Abstract

Cadmium (Cd) is toxic to animals and humans after it accumulates over decades in the kidney cortex. Food crops grown in Cd-contaminated soils are the primary sources of excessive Cd entry into humans. Although plant available Zn concentration in soil is an important factor which can greatly reduce Cd uptake by plant roots and its translocation into the edible parts, Cd:Zn ratio is suggested to be a more important factor in comparison with Zn concentration alone in determining Cd uptake by plants. In the present study, the physiological mechanisms of Cd absorption by roots and its translocation to leaves of lettuce (Lactuca sativa L.) at various Cd:Zn ratios in the rooting media were investigated. For this purpose, seedlings of hydroponically-grown lettuce were exposed to combinations of four Zn (0, 12.5, 50 and 100μM) and four Cd (0, 0.5, 1 and 10μM) concentrations providing different ratios of Cd:Zn. At each level of Cd, decreasing the Cd:Zn ratio by increasing Zn concentration in the nutrient solution caused significant reduction of root symplastic Cd and also reduced Cd loading into the xylem and Cd transport to and accumulation in leaves. The highest root symplastic Cd (1087mg/kg Dry Weight [DW]) and shoot Cd concentrations (64mg/kg DW) were observed at the highest Cd:Zn ratio of = 0.8 (Zn = 12.5, Cd = 10). At the Cd:Zn ratios of ≤ 0.01, shoot Cd concentration was less than the Detection Limit (< 0.02mg/kg DW). Decreasing Cd:Zn ratio in nutrient solution was accompanied with significant increase in root apoplastic Cd and decrease in the root symplastic Cd. According to the obtained results, at the Cd:Zn ratio equal to 0.01 and less, Cd concentration in lettuce shoots decreased to < 0.02mg/kg.

摘要

镉(Cd)在肾脏皮质中积累数十年后对动物和人类有毒。生长在受 Cd 污染土壤中的粮食作物是人类摄入过量 Cd 的主要来源。尽管土壤中有效锌浓度是一个重要因素,可以大大减少植物根系对 Cd 的吸收及其向可食用部分的转移,但与单独的 Zn 浓度相比,Cd:Zn 比在确定植物对 Cd 的吸收方面被认为是一个更重要的因素。在本研究中,研究了不同根际 Cd:Zn 比下生菜(Lactuca sativa L.)根部吸收 Cd 及其向叶片转运的生理机制。为此,将水培生菜幼苗暴露于 4 种 Zn(0、12.5、50 和 100μM)和 4 种 Cd(0、0.5、1 和 10μM)浓度的组合中,提供不同的 Cd:Zn 比。在每个 Cd 水平下,通过增加营养液中 Zn 浓度降低 Cd:Zn 比会导致根质体 Cd 的显著减少,同时也减少了 Cd 进入木质部的负载以及向叶片的运输和积累。在最高 Cd:Zn 比(= 0.8(Zn = 12.5,Cd = 10))下,观察到最高的根质体 Cd(1087mg/kg 干重[DW])和地上部 Cd 浓度(64mg/kg DW)。在 Cd:Zn 比≤0.01 时,地上部 Cd 浓度低于检测限(<0.02mg/kg DW)。营养液中 Cd:Zn 比降低伴随着根质体 Cd 显著增加和根质体 Cd 减少。根据获得的结果,在 Cd:Zn 比等于 0.01 及以下时,生菜地上部 Cd 浓度降至<0.02mg/kg。

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