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Isolation of Zn-responsive genes from two accessions of the hyperaccumulator plant Thlaspi caerulescens

机译:从高蓄积植物拟南芥的两个部分分离锌响应基因

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摘要

Several populations with different metal tolerance, uptake and root-to-shoot transport are known for the metal hyperaccumulator plant Thlaspi caerulescens. In this study, genes differentially expressed under various Zn exposures were identified from the shoots of two T. caerulescens accessions (calaminous and non-calaminous) using fluorescent differential display RT-PCR. cDNA fragments from 16 Zn-responsive genes, including those encoding metallothionein (MT) type 2 and type 3, MRP-like transporter, pectin methylesterase (PME) and Ole e 1-like gene as well as several unknown genes, were eventually isolated. The full-length MT2 and MT3 sequences differ from those previously isolated from other Thlaspi accessions, possibly representing new alleles or isoforms. Besides the differential expression in Zn exposures, the gene expression was dependent on the accession. Thlaspi homologues of ClpP protease and MRP transporter were induced at high Zn concentrations. MT2 and PME were expressed at higher levels in the calaminous accession. The MTs and MRP transporter expressed in transgenic yeasts were capable of conferring Cu and Cd tolerance, whereas the Ole e 1-like gene enhanced toxicity to these metals. The MTs increased yeast intracellular Cd content. As no significant differences were found between Arabidopsis and Thlaspi MTs, they apparently do not differ in their capacity to bind metals. However, the higher levels of MT2 in the calaminous accession may contribute to the Zn-adapted phenotype.
机译:金属超蓄积植物拟南芥(Thlaspi caerulescens)已知有几种具有不同金属耐受性,吸收和根系运输的种群。在这项研究中,使用荧光差异显示RT-PCR技术,从两个铜锈菌(calaminous和non-calaminous)的芽中鉴定出在各种锌暴露下差异表达的基因。最终从16个Zn响应基因(包括编码2型和3型金属硫蛋白(MT),MRP样转运蛋白,果胶甲基酯酶(PME)和Ole e 1样基因以及几个未知基因)的cDNA片段中分离出来。全长MT2和MT3序列与先前从其他Thlaspi分离物中分离的序列不同,可能代表新的等位基因或同种型。除了锌暴露中的差异表达外,基因表达还取决于种质。在高锌浓度下诱导了ClpP蛋白酶和MRP转运蛋白的Thlaspi同源物。 MT2和PME在the蒲种中表达较高。在转基因酵母中表达的MTs和MRP转运蛋白能够赋予Cu和Cd耐受性,而Ole e-1类基因增强了对这些金属的毒性。 MTs增加了酵母细胞内Cd含量。由于拟南芥和Thlaspi MTs之间没有发现显着差异,因此它们结合金属的能力显然没有差异。但是,在cal蒲种中较高水平的MT2可能有助于Zn适应表型。

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  • 来源
    《Planta》 |2007年第4期|977-989|共13页
  • 作者单位

    Institute of Applied Biotechnology University of Kuopio P.O. Box 1627 70211 Kuopio Finland;

    Institute of Applied Biotechnology University of Kuopio P.O. Box 1627 70211 Kuopio Finland;

    Institute of Applied Biotechnology University of Kuopio P.O. Box 1627 70211 Kuopio Finland;

    Institute of Biochemical Plant Pathology GSF—National Research Center for Environment and Health Oberschleissheim Germany;

    Department of Chemistry University of Kuopio Kuopio Finland;

    Ecology and Physiology of Plants Faculty of Earth and Life Sciences Vrije Universiteit Amsterdam Amsterdam The Netherlands;

    Laboratory of Genetics Wageningen University Wageningen The Netherlands;

    North Savo Regional Environment Centre Kuopio Finland;

    Institute of Applied Biotechnology University of Kuopio P.O. Box 1627 70211 Kuopio Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cadmium; Differential display RT-PCR; Metal hyperaccumulation; Thlaspi; Zinc;

    机译:镉;差示RT-PCR;金属超富集;Thlaspi;锌;

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