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Foliar application with nano-silicon reduced cadmium accumulation in grains by inhibiting cadmium translocation in rice plants

机译:含有纳米硅的叶面施用通过抑制水稻岩土蒸馏镉钙钙(谷粒)降低镉积累

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Abstract Nano-silicon (Si) may be more effective than regular fertilizers in protecting plants from cadmium (Cd) stress. A field experiment was conducted to study the effects of nano-Si on Cd accumulation in grains and other organs of rice plants ( Oryza sativa L. cv. Xiangzaoxian 45) grown in Cd-contaminated farmland. Foliar application with 5~25?mM nano-Si at anthesis stage reduced Cd concentrations in grains and rachises at maturity stage by 31.6~64.9 and 36.1~60.8%, respectively. Meanwhile, nano-Si application significantly increased concentrations of potassium (K), magnesium (Mg), and iron (Fe) in grains and rachises, but imposed little effect on concentrations of calcium (Ca), zinc (Zn), and manganese (Mn) in them. Uppermost nodes under panicles displayed much higher Cd concentration (4.50~5.53?mg?kg_(?1)) than other aerial organs. After foliar application with nano-Si, translocation factors (TFs) of Cd ions from the uppermost nodes to rachises significantly declined, but TFs of K, Mg, and Fe from the uppermost nodes to rachises increased significantly. High dose of nano-Si (25?mM) was more effective than low dose of nano-Si in reducing TFs of Cd from roots to the uppermost nodes and from the uppermost nodes to rachises. These findings indicate that nano-Si supply reduces Cd accumulation in grains by inhibiting translocation of Cd and, meanwhile, promoting translocation of K, Mg, and Fe from the uppermost nodes to rachises in rice plants.
机译:摘要纳米硅(Si)可能比常规肥料从镉(CD)应激保护植物中的常规肥料更有效。进行了一种田间实验,研究纳米Si对水稻谷物和其他器官的CD积累(Oryza Sativa L.CV.Xiangzaoxian 45)在CD污染的农田中生长的影响。叶面施用5〜25?mm纳米Si在原始阶段,分别在成熟阶段的晶粒中减少CD浓度,分别在31.6〜64.9和36.1〜60.8%。同时,纳米Si应用显着增加了谷物和轴承率的钾(K),镁(Mg)和铁(Fe)的浓度,但对钙(Ca),锌(Zn)和锰(在他们身上。比其他空中器官相比,面板下的最高节点显示得更高的CD浓度(4.50〜5.53Ωmg?kg _(α1))。在叶面申请与纳米Si的应用之后,从最上部节点的CD离子的易位因子(TFS)非常均下降,但是k,mg和fe来自最上面的节点的tfs显着增加。高剂量的纳米Si(25μm)比低剂量的纳米Si更有效,减少CD的TF从根到最上部节点以及最上面的节点到轴承率。这些发现表明,纳米Si供应通过抑制CD的易位来减少晶粒中的CD积累,同时促进k,mg和Fe的易位从最上部节点旋转到水稻植物中的摇晃。

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