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蒸腾作用和新陈代谢在烟草植株(烟草)镉转运与积累中的作用

Role of transpiration and metabolism in translocation and accumulation of cadmium in tobacco plants (Nicotiana tabacum L.).

作者信息

Liu Haiwei, Wang Haiyun, Ma Yibing, Wang Haohao, Shi Yi

机构信息

Key Laboratory of Tobacco Biology and Processing, Ministry of Agriculture, Tobacco Research Institute, Chinese Academy of Agricultural Sciences, Qingdao 266101, China.

National Soil Fertility and Fertilizer Effects Long-term Monitoring Network, Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

出版信息

Chemosphere. 2016 Feb;144:1960-5. doi: 10.1016/j.chemosphere.2015.10.093. Epub 2015 Nov 11.

Abstract

Tobacco plants grown in pots and in hydroponic culture accumulated cadmium (Cd) particularly: the Cd content of tobacco leaves exceeded 100 mg/kg and the enrichment factor (the ratio of Cd in leaves to that in soil) was more than 4. These high levels of accumulation identify tobacco as a hyperaccumulator of Cd. Two transpiration inhibitors (paraffin or CaCl2) and shade decreased the Cd content of tobacco leaves, and the decrease showed a linear relationship with the leaf transpiration rate. A metabolism inhibitor, namely 2,4-dinitrophenol (DNP), and low temperature (4 °C) also lowered the Cd content of tobacco leaves, but the inhibitory effect of low temperature was greater. In the half number of leaves that were shaded, the Cd content decreased to 26.5% of that in leaves that were not shaded in the same tobacco plants. These results suggests that translocation of Cd from the medium to the leaves is driven by the symplastic and the apoplastic pathways. Probably, of the two crucial steps in the translocation of Cd in tobacco plants, one, namely uptake from the medium to the xylem, is energy-dependent whereas the other, namely the transfer from the xylem to the leaves, is driven mainly by transpiration.

摘要

盆栽和水培种植的烟草植株特别容易积累镉(Cd):烟叶中的镉含量超过100毫克/千克,富集系数(叶片中镉与土壤中镉的比值)大于4。如此高的积累水平表明烟草是镉的超积累植物。两种蒸腾抑制剂(石蜡或氯化钙)和遮荫降低了烟叶中的镉含量,且这种降低与叶片蒸腾速率呈线性关系。一种代谢抑制剂,即2,4-二硝基苯酚(DNP),以及低温(4℃)也降低了烟叶中的镉含量,但低温的抑制作用更大。在同一烟草植株中,遮荫的半数叶片中的镉含量降至未遮荫叶片的26.5%。这些结果表明,镉从介质向叶片的转运是通过共质体和质外体途径进行的。在烟草植株镉转运的两个关键步骤中,可能一个是从介质吸收到木质部,这一步是能量依赖的,而另一个是从木质部转移到叶片,这一步主要由蒸腾作用驱动。

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