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生态学杂志 ›› 2026, Vol. 45 ›› Issue (5): 1642-1649.doi: 10.13292/j.1000-4890.202605.006

• 研究报告 • 上一篇    下一篇

镉胁迫对水稻不同生育期硅和镉吸收分配的影响

林红梅1,江淼华1,林文雄2*   

  1. (1闽江学院福州海洋研究院, 福州 350108; 2福建农林大学菌草与生态学院, 福州 350002)
  • 出版日期:2026-05-10 发布日期:2026-05-08

Effects of cadmium stress on silicon and cadmium uptake and allocation in rice at different growth stages.

LIN Hongmei1, JIANG Miaohua1, LIN Wenxiong2*   

  1. (1Fuzhou Institute of Oceanography, Minjiang University, Fuzhou 350108, China; 2College of Juncao Science and Ecology, Fujian Agriculture and Forestry University, Fuzhou 350002, China).

  • Online:2026-05-10 Published:2026-05-08

摘要: 镉(Cd)污染严重影响水稻安全生产,硅(Si)元素对缓解Cd危害有潜在的作用。通过分析WT、Lsi1-OE和Lsi1-RNAi三个不同Lsi1表达水平的水稻株系在分蘖期和灌浆期Si和Cd含量的变化,探讨了Si缓解Cd毒害的机制。结果表明:与对照相比,Cd处理显著提高两个时期水稻不同器官Cd含量,表现为Lsi1-RNAi株系>WT>Lsi1-OE株系;外源加Si显著降低两个时期水稻Cd含量,且Lsi1-OE株系的降幅最显著,其中,灌浆期根、茎、鞘和叶Cd含量分别降低了56.72%、55.01%、36.58%和29.70%;同时,Cd胁迫抑制了水稻不同株系Si积累,尤其是Lsi1-RNAi株系,其分蘖期根、茎、鞘和叶Si含量分别下降7.83%、21.89%、28.74%和17.66%,而WT和Lsi1-OE株系表现出较小的下降;外源施Si显著促进两个时期Lsi1-OE株系根、茎、鞘和叶Si积累,但Lsi1-RNAi株系在此处理下无显著变化,表明Cd胁迫下,Lsi1-RNAi株系对Si的积累有限。相关性分析进一步证实了Cd与Si之间的负相互关系。Lsi1过表达和Si的施用是一种降低水稻Cd毒害的有效策略。


关键词: 水稻, 硅, 镉, 生育期

Abstract: Cadmium (Cd) pollution severely threatens the safe production of rice, while silicon (Si) exhibits potential in mitigating Cd-induced toxicity. To elucidate the mechanism of Si-mediated alleviation of Cd toxicity, we analyzed the variations in Si and Cd contents in rice lines with differential Lsi1 expression levels (WT, Lsi1-OE, and Lsi1-RNAi) during the tillering and grain-filling stages. The results showed that Cd stress treatment significantly increased Cd accumulation in various rice organs at both growth stages, following the order: Lsi1-RNAi line > WT > Lsi1-OE line. Exogenous Si application significantly reduced Cd accumulation in rice at both stages, with the most pronounced decrease being observed in the Lsi1-OE line. During the grain-filling stage, Cd content in roots, stems, sheaths, and leaves decreased by 56.72%, 55.01%, 36.58%, and 29.70%, respectively. Cd stress inhibited Si accumulation across different rice lines, particularly in the Lsi1-RNAi line, where Si content in roots, stems, sheaths, and leaves decreased by 7.83%, 21.89%, 28.74% and 17.66%, respectively, at the tillering stage. In contrast, WT and Lsi1-OE lines showed relatively little reductions. Exogenous Si application significantly enhanced Si accumulation in roots, stems, sheaths, and leaves of Lsi1-OE plants at both growth stages. In contrast, there were no significant changes in Lsi1-RNAi plants under the same treatment, indicating their limited capacity for Si accumulation under Cd stress. Correlation analysis further confirmed the negative relationship between Cd and Si in rice. The combined approach of Lsi1 overexpression and Si application is an effective strategy for reducing Cd toxicity in rice.


Key words: rice (Oryza sativa), silicon, cadmium, growth stage