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中国十种主要烟草(Nicotiana tabacum L.)品种重金属积累和镉植物提取率的比较。

Comparison of heavy metal accumulation and cadmium phytoextraction rates among ten leading tobacco (Nicotiana tabacum L.) cultivars in China.

机构信息

a Key Laboratory of Tobacco Biology and Processing (Ministry of Agriculture) , Tobacco Research Institute, Chinese Academy of Agricultural Sciences , Qingdao , Shandong Province , China.

出版信息

Int J Phytoremediation. 2019;21(7):699-706. doi: 10.1080/15226514.2018.1556589. Epub 2019 Jan 18.

Abstract

Cadmium (Cd) contamination is one of the most serious global environmental problems, and phytoremediation, which uses Cd-accumulator plants, is potentially one of the sustainable solutions. Pot experiments with natural and Cd-amended soils were conducted to investigate the accumulation of heavy metals in 10 leading cultivars of tobacco in China. The extraction ability and profiles of Cd accumulation among plant organs were also analyzed. The tobacco roots accumulated cobalt, nickel, and Cd, while the leaf highly bioaccumulated Cd and lowly accumulated zinc, selenium and mercury. The transport from the tobacco stem to the leaf plays a critical role in the accumulation of these elements. The ratios of Cd concentration in the leaves at lower, middle and upper positions were comparatively stable. The high Cd-extracting cultivars were "Hongda", "NC89" and "Zhongyan 100" when grown in normal soils, "CuiBi 1" and "Hongda" in moderately contaminated soils, and "YuYan 87", "LongJiang 851" and "K326" in severely contaminated soils. Tobacco leaves could accumulate about 80% of the total Cd extracted from the soil by the plant. Considering the Cd-extraction limitations exhibited by leading tobacco cultivars, screening of germplasm resources for high or low levels of Cd-accumulation is still an important target for the future.

摘要

镉(Cd)污染是全球最严重的环境问题之一,而利用 Cd 积累植物的植物修复技术可能是一种可持续的解决方案。本研究采用自然土壤和添加 Cd 的土壤进行盆栽实验,研究了中国 10 个主要烟草品种对重金属的积累。同时还分析了各器官对重金属的吸收能力和 Cd 积累特征。烟草根部积累钴、镍和 Cd,而叶片则高度积累 Cd,同时积累锌、硒和汞较少。Cd 从烟草茎部向叶片的运输对这些元素的积累起着关键作用。处于下部、中部和上部位置的叶片中 Cd 浓度比值相对稳定。在正常土壤中,“Hongda”、“NC89”和“Zhongyan 100”等 Cd 高提取品种的 Cd 提取量较高,而在中度污染土壤中,“CuiBi 1”和“Hongda”的 Cd 提取量较高,在重度污染土壤中,“YuYan 87”、“LongJiang 851”和“K326”的 Cd 提取量较高。烟草叶片可以从土壤中提取约 80%的总 Cd。考虑到主要烟草品种的 Cd 提取限制,筛选高或低 Cd 积累的种质资源仍然是未来的一个重要目标。

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