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首页> 外文期刊>Scientific reports. >Evolution, and functional analysis of Natural Resistance-Associated Macrophage Proteins (NRAMPs) from Theobroma cacao and their role in cadmium accumulation
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Evolution, and functional analysis of Natural Resistance-Associated Macrophage Proteins (NRAMPs) from Theobroma cacao and their role in cadmium accumulation

机译:可可树天然抗性相关巨噬细胞蛋白(NRAMPs)的进化,功能分析及其在镉积累中的作用

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The presence of the toxic metal cadmium (Cd2+) in certain foodstuffs is recognised as a global problem, and there is increasing legislative pressure to reduce the content of Cd in food. The present study was conducted on cacao (Theobroma cacao), the source of chocolate, and one of the crops known to accumulate Cd in certain conditions. There are a range of possible genetic and agronomic methods being tested as a route to such reduction. As part of a gene-based approach, we focused on the Natural Resistance-Associated Macrophage Proteins (NRAMPS), a family of proton/metal transporter proteins that are evolutionarily conserved across all species from bacteria to humans. The plant NRAMP gene family are of particular importance as they are responsible for uptake of the nutritionally vital divalent cations Fe2+, Mn2+, Zn2+, as well as Cd2+. We identified the five NRAMP genes in cacao, sequenced these genes and studied their expression in various organs. We then confirmed the expression patterns in response to variation in nutrient cation availability and addition of Cd2+. Functional analysis by expression in yeast provided evidence that NRAMP5 encoded a protein capable of Cd2+ transport, and suggested this gene as a target for genetic selection/modification.
机译:某些食品中有毒金属镉(Cd2 +)的存在被认为是一个全球性问题,并且越来越大的立法压力要求降低食品中Cd的含量。本研究是对可可(Theobroma cacao),巧克力的来源以及已知在某些条件下会累积Cd的一种作物进行的。目前正在测试一系列可能的遗传和农艺方法,以此作为减少此类疾病的途径。作为基于基因的方法的一部分,我们重点研究了与自然抗性相关的巨噬细胞蛋白(NRAMPS),这是一个质子/金属转运蛋白家族,在细菌到人类的所有物种中,其进化上都是保守的。植物NRAMP基因家族特别重要,因为它们负责摄取营养必需的二价阳离子Fe2 +,Mn2 +,Zn2 +以及Cd2 +。我们在可可中鉴定了五个NRAMP基因,对这些基因进行了测序,并研究了它们在各种器官中的表达。然后,我们确认了响应于营养阳离子可用性和Cd2 +添加变化的表达模式。通过在酵母中表达的功能分析提供了证据,表明NRAMP5编码了一种能够进行Cd2 +转运的蛋白质,并建议该基因作为基因选择/修饰的靶标。

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