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Iron uptake system mediates nitrate-facilitated cadmium accumulation in tomato (Solanum lycopersicum) plants

机译:铁吸收系统介导番茄(Solanum lycopersicum)植物中硝酸盐促进的镉积累

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摘要

Nitrogen (N) management is a promising agronomic strategy to minimize cadmium (Cd) contamination in crops. However, it is unclear how N affects Cd uptake by plants. Wild-type and iron uptake-inefficient tomato (Solanum lycopersicum) mutant (T3238fer) plants were grown in pH-buffered hydroponic culture to investigate the direct effect of N-form on Cd uptake. Wild-type plants fed NO3 accumulated more Cd than plants fed NH4+. Iron uptake and LeIRT1 expression in roots were also greater in plants fed NO3. However, in mutant T3238fer which loses FER function, LeIRT1 expression in roots was almost completely terminated, and the difference between NO3 and NH4+ treatments vanished. As a result, the N-form had no effect on Cd uptake in this mutant. Furthermore, suppression of LeIRT1 expression by NO synthesis inhibition with either tungstate or L-NAME, also substantially inhibited Cd uptake in roots, and the difference between N-form treatments was diminished. Considering all of these findings, it was concluded that the up-regulation of the Fe uptake system was responsible for NO3 -facilitated Cd accumulation in plants.
机译:氮(N)管理是一种有希望的农艺策略,可最大程度地减少作物中的镉(Cd)污染。但是,目前尚不清楚氮如何影响植物对镉的吸收。在pH缓冲的水培条件下种植野生型和铁吸收效率低的番茄(Solanum lycopersicum)突变体(T3238fer)植物,以研究N形态对Cd吸收的直接影响。饲喂NO3 -的野生型植物比饲喂NH4 + 的植物积累更多的镉。饲喂NO3 -的植物根部的铁吸收和LeIRT1表达也更高。然而,在失去FER功能的突变体T3238fer中,根部LeIRT1表达几乎完全终止,NO3 -和NH4 + 处理之间的差异消失了。结果,该突变体中的N形式对Cd的吸收没有影响。此外,通过钨酸盐或L-NAME的NO合成抑制来抑制LeIRT1表达,也显着抑制了根部对Cd的吸收,并且减少了N型处理之间的差异。考虑到所有这些发现,可以得出结论,Fe吸收系统的上调是NO3 -促进植物体内Cd积累的原因。

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