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霞多丽苗木中镉的积累、亚细胞分布及化学存在形态
引用本文:杜远鹏,李洪敬,尹克林,翟衡.霞多丽苗木中镉的积累、亚细胞分布及化学存在形态[J].应用生态学报,2012,23(6):1607-1612.
作者姓名:杜远鹏  李洪敬  尹克林  翟衡
作者单位:1. 山东农业大学园艺科学与工程学院/作物生物学国家重点实验室,山东泰安,271018
2. 西南大学园艺园林学院,重庆,400715
基金项目:“十二五”农业部现代农业产业技术体系专项(CARS-30-zp-06)资助
摘    要:以一年生盆栽葡萄品种霞多丽(Vitis vinifera L.cv.Chardonnay)自根苗及SO4砧嫁接苗为试材,采用CdCl2和CaCl2根部灌入的方法,研究了镉在霞多丽植株内的亚细胞分布和存在形态,以及外源添加氯化钙对植株镉吸收的影响.结果表明:大部分镉积累在霞多丽自根苗及嫁接苗的地下部器官;4 mmol·L-1浓度的CdCl2处理下,镉在自根苗根及根颈部分的积累量占77.1%,在叶片中的积累量占1.4%,而嫁接苗中镉在嫁接口以下部分的积累量高达93.9%,叶片中的积累量仅占0.1%;5 mmol·L-1外源钙缓解了植株对镉的吸收积累,而10mmol ·L-1外源钙则显著增加了植株对镉的吸收积累.镉在根系和叶片中的亚细胞分布规律为细胞壁>可溶性部分>细胞器,且在细胞壁中积累50%以上;镉在根系中主要以氯化钠提取态存在,其次为乙酸提取态,去离子水提取态含量最少.随着镉处理浓度的增加,各提取态含量有所变化.

关 键 词:  霞多丽  亚细胞分布  化学形态

Cadmium accumulation, subcellular distribution, and chemical forms in Vitis vinifera cv. chardonnay grapevine
Du Yuan-Peng,Li Hong-Jing,Yin Ke-Lin,Zhai Heng.Cadmium accumulation, subcellular distribution, and chemical forms in Vitis vinifera cv. chardonnay grapevine[J].Chinese Journal of Applied Ecology,2012,23(6):1607-1612.
Authors:Du Yuan-Peng  Li Hong-Jing  Yin Ke-Lin  Zhai Heng
Institution:State Key Laboratory of Horticultural for Crop Biology, College of Horticultural Science and Engineering, Shandong Agricultural University, Tai'an, China. duyuanpeng001@163.com
Abstract:Abstract: A pot culture experiment was conducted to study the Cd absorption, Cd subcellular distribution, and Cd chemical forms in one-year old self-rooted Chardonnay and SO4 rootstock-grafted Chardonnay grapevine after root-irrigating with different concentration CdCl and CaCl2. In the grapevine, the absorbed Cd was mostly distributed in underground organs (root and rhizome). In treatment 4 mmol x L(-1) of CdCl2, 77.1% and 1.4% of the absorbed Cd in self-rooted Chardonnay were accumulated in underground organs and leaves, respectively, while 93.9% and 0.1% of the absorbed Cd in grafted Chardonnay were accumulated in the organs below graft position and in leaves, respectively. 5 mmol L(-1) of CaCl2 decreased the plant Cd absorption and accumulation, while 10 mmol x L(-1) of CaCl2 increased the plant Cd absorption and accumulation significantly. The Cd subcellular distribution in roots and leaves was in the order of cell wall > soluble fraction > organelle, and more than 50% of the Cd was accumulated in cell wall. In the roots, NaCl-extractable Cd had a major proportion, followed by HAc-extractable Cd, and water-extractable Cd. The contents of all the Cd chemical forms varied with the increasing concentration of Cd in the treatments.
Keywords:cadmium  Chardonnay  subcellular distribution  chemical form  
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