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Low cadmium (LCD) a novel gene related to cadmium tolerance and accumulation in rice

机译:低镉(LCD)一种与水稻对镉的耐受性和积累相关的新基因

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摘要

The contamination of food crops by cadmium (Cd) is a major concern in food production because it can reduce crop yields and threaten human health. In this study, knockout rice plants (Oryza sativa) tagged with the gene trap vector pGA2707 were screened for Cd tolerance, and the tolerant line lcd was obtained. The lcd mutant showed tolerance to Cd on agar plates and in hydroponic culture during early plant development. Metal concentration measurements in hydroponically grown plants revealed significantly less Cd in the shoots of lcd plants compared with wild-type (WT) shoots. When cultured in the field in soil artificially contaminated with low levels of Cd, lcd showed no significant difference in the Cd content of its leaf blades; however, the Cd concentration in the grains was 55% lower in 2009 and 43% lower in 2010. There were no significant differences in plant dry weight or seed yield between lcd and wild-type plants. LCD, a novel gene, is not homologous to any other known gene. LCD localized to the cytoplasm and nucleus, and was expressed mainly in the vascular tissues in the roots and phloem companion cells in the leaves. These data indicate that lcd may be useful for understanding Cd transport mechanisms and is a promising candidate rice line for use in combating the threat of Cd to human health.
机译:镉对粮食作物的污染是粮食生产中的主要问题,因为它会降低作物产量并威胁人类健康。在这项研究中,筛选了用基因捕获载体pGA2707标记的敲除水稻植株(Crys),获得了对Cd的耐性。在早期植物发育过程中,lcd突变体在琼脂平板和水培培养中显示出对Cd的耐受性。与野生型(WT)芽相比,水培植物中金属浓度的测量显示,lcd植物的芽中Cd明显减少。当在人工种植的土壤中被低水平的Cd污染时,lcd叶片的Cd含量没有显着差异。然而,2009年谷物中的Cd浓度降低了55%,2010年降低了43%。lcd和野生型植物之间的植物干重或种子产量没有显着差异。 LCD是一种新基因,与任何其他已知基因均不同源。 LCD定位于细胞质和细胞核,主要在根部的维管组织和叶中的韧皮部伴随细胞中表达。这些数据表明,lcd可能有助于理解Cd的运输机制,并且是有前途的候选水稻系,可用于对抗Cd对人类健康的威胁。

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