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锌超积累植物拟南芥(Arabidopsis halleri)中AhMHX(拟南芥液泡金属/质子交换体的同源物)在叶片中的高表达。

High expression in leaves of the zinc hyperaccumulator Arabidopsis halleri of AhMHX, a homolog of an Arabidopsis thaliana vacuolar metal/proton exchanger.

作者信息

Elbaz Benayahu, Shoshani-Knaani Noa, David-Assael Ora, Mizrachy-Dagri Talya, Mizrahi Keren, Saul Helen, Brook Emil, Berezin Irina, Shaul Orit

机构信息

Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan 52900, Israel.

出版信息

Plant Cell Environ. 2006 Jun;29(6):1179-90. doi: 10.1111/j.1365-3040.2006.01500.x.

Abstract

Zn hyperaccumulator plants sequester Zn into their shoot vacuoles. To date, the only transporters implicated in Zn sequestration into the vacuoles of hyperaccumulator plants are cation diffusion facilitators (CDFs). We investigated the expression in Arabidopsis halleri of a homolog of AtMHX, an A. thaliana tonoplast transporter that exchanges protons with Mg, Zn and Fe ions. A. halleri has a single copy of a homologous gene, encoding a protein that shares 98% sequence identity with AtMHX. Western blot analysis with vacuolar-enriched membrane fractions suggests localization of AhMHX in the tonoplast. The levels of MHX proteins are much higher in leaves of A. halleri than in leaves of the non-accumulator plant A. thaliana. At the same time, the levels of MHX transcripts are similar in leaves of the two species. This suggests that the difference in MHX levels is regulated at the post-transcriptional level. In vitro translation studies indicated that the difference between AhMHX and AtMHX expression is not likely to result from the variations in the sequence of their 5' untranslated regions (5'UTRs). The high expression of AhMHX in A. halleri leaves is constitutive and not significantly affected by the metal status of the plants. In both species, MHX transcript levels are higher in leaves than in roots, but the difference is higher in A. halleri. Metal sequestration into root vacuoles was suggested to inhibit hyperaccumulation in the shoot. Our data implicate AhMHX as a candidate gene in metal accumulation or tolerance in A. halleri.

摘要

锌超积累植物将锌隔离在其地上部液泡中。迄今为止,唯一与锌超积累植物液泡中锌隔离有关的转运蛋白是阳离子扩散促进因子(CDF)。我们研究了拟南芥液泡膜转运蛋白AtMHX(一种与镁、锌和铁离子进行质子交换的蛋白)的同源物在遏蓝菜中的表达情况。遏蓝菜有一个该同源基因的单拷贝,编码一种与AtMHX具有98%序列同一性的蛋白质。对富含液泡的膜组分进行的蛋白质免疫印迹分析表明AhMHX定位于液泡膜。遏蓝菜叶片中MHX蛋白的水平远高于非积累植物拟南芥叶片中的水平。同时,两个物种叶片中MHX转录本的水平相似。这表明MHX水平的差异是在转录后水平上调控的。体外翻译研究表明,AhMHX和AtMHX表达的差异不太可能是由它们5'非翻译区(5'UTR)序列的变化导致的。AhMHX在遏蓝菜叶片中的高表达是组成型的,并且不受植物金属状态的显著影响。在两个物种中,叶片中MHX转录本水平均高于根中,但遏蓝菜中的差异更大。有人提出,锌在根液泡中的隔离会抑制地上部的超积累。我们的数据表明AhMHX是遏蓝菜中金属积累或耐受性的候选基因。

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