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From Laboratory to Field: OsNRAMP5-Knockdown Rice Is a Promising Candidate for Cd Phytoremediation in Paddy Fields

机译:从实验室到田间:OsNRAMP5-敲除水稻是水稻田中镉植物修复的有前途的候选人

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摘要

Previously, we reported that OsNRAMP5 functions as a manganese, iron, and cadmium (Cd) transporter. The shoot Cd content in OsNRAMP5 RNAi plants was higher than that in wild-type (WT) plants, whereas the total Cd content (roots plus shoots) was lower. For efficient Cd phytoremediation, we produced OsNRAMP5 RNAi plants using the natural high Cd-accumulating cultivar Anjana Dhan (A5i). Using a positron-emitting tracer imaging system, we assessed the time-course of Cd absorption and accumulation in A5i plants. Enhanced 107Cd translocation from the roots to the shoots was observed in A5i plants. To evaluate the phytoremediation capability of A5i plants, we performed a field experiment in a Cd-contaminated paddy field. The biomass of the A5i plants was unchanged by the suppression of OsNRAMP5 expression; the A5i plants accumulated twice as much Cd in their shoots as WT plants. Thus, A5i plants could be used for rapid Cd extraction and the efficient phytoremediation of Cd from paddy fields, leading to safer food production.
机译:以前,我们报道OsNRAMP5充当锰,铁和镉(Cd)转运蛋白。 OsNRAMP5 RNAi植物中的芽Cd含量高于野生型(WT)植物,而总Cd含量(根加芽)则较低。为了有效地进行镉的植物修复,我们使用天然的高镉累积品种Anjana Dhan(A5i)生产了OsNRAMP5 RNAi植物。使用正电子发射示踪成像系统,我们评估了A5i植物中Cd吸收和积累的时间过程。在A5i植物中观察到了 107 Cd从根到芽的增强转运。为了评估A5i植物的植物修复能力,我们在Cd污染的稻田中进行了田间试验。通过抑制OsNRAMP5的表达,A5i植物的生物量没有变化。 A5i植物的芽中Cd的含量是WT植物的两倍。因此,A5i植物可用于快速提取Cd和对稻田中Cd进行有效的植物修复,从而实现更安全的食品生产。

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