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与烟草镉积累品种变异相关的NtNramp5等位基因变异

Allelic Variation of NtNramp5 Associated with Cultivar Variation in Cadmium Accumulation in Tobacco.

作者信息

Tang Zhong, Cai Hailin, Li Jie, Lv Yanling, Zhang Wenwen, Zhao Fang-Jie

机构信息

State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, China.

Tobacco Production Technology Center, Changsha Branch of Hunan Tobacco Company, Changsha 410001, China.

出版信息

Plant Cell Physiol. 2017 Sep 1;58(9):1583-1593. doi: 10.1093/pcp/pcx087.

Abstract

Tobacco (Nicotiana tabacum) is a cadmium (Cd) accumulator, and smoking is a major source of Cd exposure. In the present study, we identified two tobacco cultivars with contrasting phenotypes of Cd and manganese (Mn) accumulation in both hydroponic and soil pot experiments. Physiological experiments showed that the two cultivars differed in Cd uptake, but not in Cd translocation from roots to shoots. A homolog of OsNramp5 (natural resistance-associated macrophage protein 5), NtNramp5, was isolated from both cultivars. There was no significant difference in the expression level of NtNramp5 in the roots between the two cultivars. Sequence analysis revealed that the low Cd/Mn-accumulating cultivar possesses an NtNramp5 allele with a predicted mutation for early translation termination, resulting in a truncated protein missing 104 amino acids in the C-terminus of the full-length NtNramp5 found in the high Cd/Mn-accumulating cultivar. Both proteins were found to be localized to the plasma membrane. Heterologous expression of the two alleles of NtNramp5 in yeast showed that the full-length protein had transport activities for both Mn and Cd, whereas the truncated protein had no transport activity for Mn and a weak transport activity for Cd. These results suggest that NtNramp5 is a transporter for Mn and Cd, and the allelic variation in the coding region of NtNramp5 probaby explains the cultivar difference in Cd and Mn accumulation.

摘要

烟草(Nicotiana tabacum)是一种镉(Cd)蓄积植物,吸烟是镉暴露的主要来源。在本研究中,我们在水培和土培盆栽实验中鉴定出了两个镉和锰(Mn)积累表型相反的烟草品种。生理实验表明,这两个品种在镉吸收方面存在差异,但在镉从根部向地上部的转运方面没有差异。从两个品种中均分离出了水稻OsNramp5(天然抗性相关巨噬蛋白5)的同源物NtNramp5。两个品种根部NtNramp5的表达水平没有显著差异。序列分析表明,低镉/锰积累品种拥有一个NtNramp5等位基因,该等位基因预测存在早期翻译终止突变,导致在高镉/锰积累品种中发现的全长NtNramp5的C末端缺失104个氨基酸的截短蛋白。两种蛋白均定位于质膜。NtNramp5两个等位基因在酵母中的异源表达表明,全长蛋白对锰和镉均具有转运活性,而截短蛋白对锰没有转运活性,对镉的转运活性较弱。这些结果表明,NtNramp5是锰和镉的转运体,NtNramp5编码区的等位变异可能解释了品种间镉和锰积累的差异。

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