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中国农学通报 ›› 2026, Vol. 42 ›› Issue (17): 152-159.doi: 10.11924/j.issn.1000-6850.casb2025-0664

• 植物保护 • 上一篇    下一篇

不同施硒水平影响水稻抗氧化和解毒作用的研究

赖晓凤(), 孙靓雯, 李燕芳, 戴阳朔, 肖汉祥, 袁龙宇()   

  1. 广东省农业科学院植物保护研究所/广东省植物保护新技术重点实验室, 广州 510640
  • 收稿日期:2025-08-08 修回日期:2025-12-11 出版日期:2026-09-15 发布日期:2026-09-09
  • 通讯作者:
    袁龙宇,男,1988年出生,湖北荆州人,副研究员,博士,研究方向:水稻害虫致害性变异分子机制。通信地址:510640 广东省天河区金颖路7号植保所,Tel:020-87511154,E-mail:
  • 作者简介:

    赖晓凤,女,1996年出生,广东揭阳人,研究实习员,硕士,研究方向:水稻品种抗虫分子机制。通信地址:510640 广东省天河区金颖路7号植保所,Tel:020-87511154,E-mail:

  • 基金资助:
    以农产品为单元的广东省现代农业产业技术体系创新团队建设项目“水稻产业技术体系”(2025CXTD05); 广东省农业科学院高水平农科院建设专项(NYQS202602); 广东省农业科学院创新基金项目产业专项“稻渔共作模式及生态控害关键技术研究与示范”(202231)

Effects of Different Selenium Application Levels on Antioxidant and Detoxification of Rice

LAI Xiaofeng(), SUN Jingwen, LI Yanfang, DAI Yangshuo, XIAO Hanxiang, YUAN Longyu()   

  1. Institute of Plant Protection, Guangdong Academy of Agricultural Sciences/ Guangdong Provincial Key Laboratory of High Technology for Plant Protection, Guangzhou 510640
  • Received:2025-08-08 Revised:2025-12-11 Published:2026-09-15 Online:2026-09-09

摘要:

本研究旨在探讨不同硒浓度处理对水稻抗氧化和解毒作用的影响,并为富硒水稻的后续研究提供参考。实验以水稻品种‘美香占2号’为材料,采用水培方式,通过添加亚硒酸钠设置(0、0.01、0.025、0.05 mg/L)4个硒浓度处理,测定水稻的株高、光合色素含量、硒及养分元素(氮、磷、钾)含量,并分析抗氧化酶(SOD、POD、CAT)、解毒酶(GST、CarE)活性以及水稻硒结合蛋白1(Selnium-binding Protein 1, OsSBP1)的基因表达水平。研究结果表明,适量施硒能促进水稻生长,但过量施硒则抑制生长并导致植株矮化。当硒浓度从0.01 mg/L增至0.05 mg/L时,株高降低21.8%~32.9%。低浓度硒对叶片光合色素含量无显著影响,而在0.05 mg/L时其含量显著降低。随着硒浓度升高,水稻根、茎、叶的硒含量持续上升,在0.05 mg/L时分别达到对照的236、163和64倍,但未抑制水稻对氮、磷和钾等必需营养元素的吸收和积累。随着施硒水平的提高,水稻根、茎和叶片的丙二醛(MDA)含量均显著下降,表明适量施硒能有效减轻膜脂过氧化,其中根、茎、叶的MDA最低值分别出现在0.05 mg/L、0.025 mg/L、0.01 mg/L处理,降幅分别为79.5%、65.7%、53.7%。在0.01~0.05 mg/L硒浓度范围内,根、茎、叶的SOD、GST和CarE活性均显著上升;而水稻根、茎的POD和CAT活性均则呈先升后降趋势;OsSBP1基因相对表达量在根、茎、叶中也表现为先升后降,在0.05 mg/L时,茎和叶中的表达量分别降至对照的0.5倍和0.3倍。综上所述,适量施硒能提高水稻的硒含量、降低MDA含量,提高水稻抗氧化物酶和解毒酶活性,提高水稻OsSBP1的表达水平,从而增强水稻抗氧化能力,缓解硒胁迫带来的毒害症状,但过量施硒会抑制水稻的抗氧化活性,对水稻产生毒害作用,降低水稻的光合色素含量,抑制水稻的生长发育。本研究结果为水稻合理施用硒肥提供了理论参考。

关键词: 水稻, 硒, 抗氧化物酶, 解毒酶, 亚硒酸钠, 硒结合蛋白

Abstract:

This study aimed to investigate the effects of varying selenium (Se) concentrations on the antioxidant and detoxification responses in rice, and to provide a basis for subsequent research on Se-enriched rice. Using the rice cultivar ‘Meixiangzhan 2’ as the experimental material, a hydroponic experiment was conducted. Four Se concentration treatments (0, 0.01, 0.025, and 0.05 mg/L) were established by adding sodium selenite. Plant height, photosynthetic pigment content, selenium and nutrient (N, P, K) contents were determined, and changes in antioxidant enzyme (SOD, POD, CAT) activities, detoxification enzyme (GST, CarE) activities, and the expression level of rice selenium-binding protein 1 (OsSBP1) were analyzed. The results showed that appropriate Se application promoted rice growth, while excessive Se inhibited growth and caused dwarfing. The plant height was reduced by 21.8%-32.9% when increased Se concentration from 0.01 to 0.05 mg/L. Low Se concentrations had no effect on leaf photosynthetic pigment content, but the content decreased significantly at 0.05 mg/L. With increasing Se concentration, the Se content in rice roots, stems, and leaves continuously increased, reaching 236-, 163-, and 64-fold that of the control at 0.05 mg/L, respectively. However, the absorption and accumulation of nitrogen (N), phosphorus (P), and potassium (K) in rice were not inhibited. Malondialdehyde (MDA) content in roots stems and leaves decreased significantly with increasing Se levels. The lowest MDA values were observed at 0.05 mg/L (roots), 0.025 mg/L (stems), and 0.01 mg/L (leaves), with reductions of 79.5%, 65.7%, and 53.7%, respectively. Within the Se concentration range of 0.01-0.05 mg/L, the activities of superoxide dismutase (SOD), glutathione S-transferase (GST), and carboxylesterase (CarE) in roots, stems and leaves increased significantly. In contrast, the activities of peroxidase (POD) and catalase (CAT) in roots and stems initially increased and then decreased. The relative expression of OsSBP1 also showed a similar trend, decreasing to 0.5- and 0.3-fold the control level in stems and leaves at 0.05 mg/L, respectively. In summary, appropriate Se application increased the Se content, reduced MDA content, enhanced the activities of antioxidant and detoxification enzymes, and upregulated OsSBP1 expression in rice, thereby promoting antioxidant capacity and alleviating Se toxicity symptoms. However, excessive Se application inhibited antioxidant activity, exerted toxic effects, reduced photosynthetic pigment content, and suppressed the growth and development of rice. This study provides a theoretical reference for the rational application of Se fertilizer in rice cultivation.

Key words: rice, selenium, antioxidant enzymes, detoxification enzymes, sodium selenite, selenium binding protein

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