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首页> 外文期刊>Plant physiology >Identification of Thlaspi caerulescens Genes That May Be Involved in Heavy Metal Hyperaccumulation and Tolerance. Characterization of a Novel Heavy Metal Transporting ATPase
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Identification of Thlaspi caerulescens Genes That May Be Involved in Heavy Metal Hyperaccumulation and Tolerance. Characterization of a Novel Heavy Metal Transporting ATPase

机译:可能与重金属超富集和耐受性有关的拟南芥(Thlaspi caerulescens)基因的鉴定。新型重金属转运ATP酶的表征

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Thlaspi caerulescens is a heavy metal hyperaccumulator plant species that is able to accumulate extremely high levels of zinc (Zn) and cadmium (Cd) in its shoots (30,000 mug g(-1) Zn and 10,000 mug g(-1) Cd), and has been the subject of intense research as a model plant to gain a better understanding of the mechanisms of heavy metal hyperaccumulation and tolerance and as a source of genes for developing plant species better suited for the phytoremediation of metal-contaminated soils. In this study, we report on the results of a yeast (Saccharomyces cerevisae) complementation screen aimed at identifying candidate heavy metal tolerance genes in T. caerulescens. A number of Thlaspi genes that conferred Cd tolerance to yeast were identified, including possible metal-binding ligands from the metallothionein gene family, and a P-type ATPase that is a member of the P(1B) subfamily of purported heavy metal-translocating ATPases. A detailed characterization of the Thlaspi heavy metal ATPase, TcHMA4, demonstrated that it mediates yeast metal tolerance via active efflux of a number of different heavy metals (Cd, Zn, lead [Pb], and copper [Cu]) out of the cell. However, in T. caerulescens, based on differences in tissue-specific and metal-responsive expression of this transporter compared with its homolog in Arabidopsis (Arabidopsis thaliana), we suggest that it may not be involved in metal tolerance. Instead, we hypothesize that it may play a role in xylem loading of metals and thus could be a key player in the hyperaccumulation phenotype expressed in T. caerulescens. Additionally, evidence is presented showing that the C terminus of the TcHMA4 protein, which contains numerous possible heavy metal-binding His and Cys repeats residues, participates in heavy metal binding. When partial peptides from this C-terminal domain were expressed in yeast, they conferred an extremely high level of Cd tolerance and Cd hyperaccumulation. The possibilities for enhancing the metal tolerance and phytoremediation potential of higher plants via expression of these metal-binding peptides are also discussed.
机译:拟南芥(Thlaspi caerulescens)是一种重金属超蓄积植物,能够在其芽中积累极高水平的锌(Zn)和镉(Cd)(30,000马克g(-1)锌和10,000马克g(-1)镉),作为更好地了解重金属超富集和耐受机制的典范植物以及作为开发更适合于金属污染土壤的植物修复的植物物种的基因来源,它已成为广泛研究的主题。在这项研究中,我们报告了酵母(Saccharomyces cerevisae)互补筛选的结果,该筛选旨在鉴定拟南芥中的候选重金属耐受基因。确定了许多赋予酵母Cd耐受性的Thlaspi基因,包括可能来自金属硫蛋白基因家族的金属结合配体,以及一个P型ATPase,该P型ATPase是据称重金属易位ATPase的P(1B)亚家族的成员。 。 Thlaspi重金属ATPase TcHMA4的详细表征表明,它可以通过细胞中大量不同重金属(Cd,Zn,铅[Pb]和铜[Cu])的有效流出来介导酵母对金属的耐受性。但是,在拟南芥中,基于该转运蛋白与其拟南芥(Arabidopsis thaliana)同源物相比,在组织特异性和金属响应性表达上的差异,我们建议它可能不参与金属耐受性。取而代之的是,我们假设它可能在金属的木质部负载中发挥作用,因此可能是青枯菌中表达的高积累表型的关键因素。此外,提供的证据表明TcHMA4蛋白的C末端包含许多可能的重金属结合His和Cys重复残基,参与重金属结合。当来自此C末端结构域的部分肽在酵母中表达时,它们赋予了极高水平的Cd耐受性和Cd超积累。还讨论了通过表达这些金属结合肽来增强高等植物的金属耐受性和植物修复潜力的可能性。

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