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Mechanisms of Zinc Tolerance in the Heavy Metal Hyperaccumulator Thlaspi caerulescens

机译:重金属超蓄积拟南芥中锌耐性的机制

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摘要

The main objective of this dissertation was to identify and examine the mechanisms conferring zinc tolerance used by the zinc and cadmium (Zn/Cd) hyperaccumulator, Thlaspi caerulescens, a plant that has been extensively studied for its altered physiology leading to increased metal tolerance and shoot metal accumulation. Three projects were carried out to address the question of extreme metal tolerance that is one of the hallmarks of this species. The first project, isolation and characterization of a putative vacuolar zinc transporter, MTP1, found higher expression of this gene in T. caerulescens compared with the related non-accumulator, T. arvense. Additionally MTP1 expression increased in response to increasing plant Zn status. When MTP1 was expressed in yeast, Zn accumulation increased; however, no strong phenotype was seen in transgenic Arabidopsis thaliana overexpressing the A. thaliana homolog of MTP1.In the second project, a T. caerulescens cDNA library was screened for genes conferring Zn tolerance to yeast when grown on high zinc media. A number of genes with widely divergent potential functions were identified including signaling, metabolic and protein regulation genes. These genes, when expressed in yeast, conferred either increased or reduced Zn accumulation, and several were chosen for whole plant studies. One specific gene of interest was PKS4, a serine-threonine kinase, which was associated with increased zinc accumulation relative to wild type yeast strains. Since other members in this kinase family have already been implicated in plant abiotic stress responses, we examined the effect of altered PKS4 expression in planta on heavy metal tolerance. Finally, T. caerulescens suspension cell lines were created and characterized for the same metal hyperaccumulation traits exhibited in the whole plant (Zn/Cd tolerance, transport and accumulation). From this work, the increased metal tolerance and altered regulation of metal tolerance genes seen in plants was observed, indicating these are traits expressed at the cellular level. We are now able to stably transform these cell lines, which opens up future work testing candidate hyperaccumulation genes using these suspension cells lines.
机译:本论文的主要目的是确定并研究赋予锌和镉(Zn / Cd)超级积累的植物Thlaspi caerulescens使用的耐锌机制,该植物因其生理变化导致金属耐受性和枝条增加而被广泛研究。金属积累。开展了三个项目来解决极端金属耐受性的问题,这是该物种的标志之一。第一个项目,即假定的液泡锌转运蛋白MTP1的分离和表征,发现该基因在青枯菌中的表达高于相关的非蓄积性杀虫剂。另外,MTP1表达响应于植物Zn状态的增加而增加。当MTP1在酵母中表达时,锌的积累增加。然而,在过表达拟南芥MTP1同源基因的拟南芥中没有观察到强表型。在第二个项目中,筛选了青霉菌cDNA文库,寻找在高锌培养基上生长时对酵母具有锌耐性的基因。确定了许多具有广泛不同的潜在功能的基因,包括信号传导,代谢和蛋白质调控基因。当这些基因在酵母中表达时,它们会增加或减少锌的积累,并选择了几个进行全植物研究。感兴趣的一种特定基因是PKS4,一种丝氨酸-苏氨酸激酶,与野生型酵母菌株相比,锌的积累与锌的增加有关。由于该激酶家族中的其他成员已参与植物非生物胁迫反应,因此我们研究了植物中PKS4表达改变对重金属耐受性的影响。最后,创建了拟青霉悬浮细胞系,并针对整个植物中表现出的相同的金属超积累性状(Zn / Cd耐受性,转运和积累)进行了表征。通过这项工作,观察到在植物中观察到的增加的金属耐受性和对金属耐受性基因的调节改变,表明这些是在细胞水平表达的性状。现在,我们能够稳定地转化这些细胞系,这为使用这些悬浮细胞系测试候选超积累基因提供了未来的工作。

著录项

  • 作者

    Klein Melinda Anne;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en_US
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