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Molecular Dissection of the Role of Histidine in Nickel Hyperaccumulation in Thlaspi goesingense (Hálácsy)

机译:组氨酸在拟南芥中镍超积累中的作用的分子解剖(Hálácsy)

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摘要

To understand the role of free histidine (His) in Ni hyperaccumulation in Thlaspi goesingense, we investigated the regulation of His biosynthesis at both the molecular and biochemical levels. Three T. goesingense cDNAs encoding the following His biosynthetic enzymes, ATP phosphoribosyltransferase (THG1, GenBank accession no. ), imidazoleglycerol phosphate dehydratase (THB1, GenBank accession no. ), and histidinol dehydrogenase (THD1, GenBank accession no. ) were isolated by functional complementation of Escherichia coli His auxotrophs. Northern analysis of THG1, THD1, and THB1 gene expression revealed that each gene is expressed in both roots and shoots, but at the concentrations and dosage times of Ni treatment used in this study, these genes failed to show any regulation by Ni. We were also unable to observe any increases in the concentration of free His in root, shoot, or xylem sap of T. goesingense in response to Ni exposure. X-ray absorption spectroscopy of root and shoot tissue from T. goesingense and the non-accumulator species Thlaspi arvense revealed no major differences in the coordination of Ni by His in these tissues. We therefore conclude that the Ni hyperaccumulation phenotype in T. goesingense is not determined by the overproduction of His in response to Ni.
机译:为了解游离组氨酸(His)在鹅肝中Ni过度积累中的作用,我们研究了在分子和生化水平上对His生物合成的调节。通过功能分离了编码以下His生物合成酶的三个戈斯甘桑丝cDNA:ATP磷酸核糖基转移酶(THG1,GenBank登录号),咪唑甘油磷酸脱水酶(THB1,GenBank登录号)和组蛋白醇脱氢酶(THD1,GenBank登录号)。大肠杆菌的营养缺陷型的补充。对THG1,THD1和THB1基因表达的Northern分析表明,每个基因在根和芽中均表达,但是在本研究中使用的Ni处理浓度和剂量时间下,这些基因均未显示出Ni的任何调节作用。我们也无法观察到由于暴露于镍而导致的戈氏线虫根,茎或木质部汁液中游离His浓度的增加。 X.射线吸收光谱法显示了来自戈斯金根根茎和非蓄积种Thlaspi arvense的根和芽组织,这些组织中的His配位对Ni的配位没有重大差异。因此,我们得出的结论是,戈氏线虫中的Ni高积累表型不是由His对Ni的过量生产所决定的。

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