低pH条件下纳米硅矿化沉积对豌豆根尖和根边缘细胞耐铝性的影响
作者:
作者单位:

佛山大学国际膜生物学与环境研究中心/农业与生物工程学院,佛山 528200

作者简介:

唐娇, E-mail1785859204@qq.com

通讯作者:

冯英明, E-mail:fyingming@fosu.edu.cn

中图分类号:

S311

基金项目:

国家自然科学基金项目(42077150;31672228)


Effects of mineralization and deposition of nano silicon under low pH on aluminum tolerance in root tip and root border cells of pea
Author:
Affiliation:

International Research Centre for Environmental Membrane Biology /Department of Horticulture, School of Agricultural and Billogical Engineering, Foshan University, Foshan 528200, China

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    摘要:

    为探究不同pH铝环境条件下纳米硅矿化对豌豆根尖及根边缘细胞保护机制的影响,通过聚乙烯亚胺(polyethyleneimine, PEI)诱导硅静电吸附形成纳米硅壳进行仿生矿化的方式,解析不同pH(pH 3.5、4.5、5.5)条件下纳米硅对豌豆根尖及根边缘细胞缓解铝毒的生理调控机制。结果显示,各pH的铝处理都降低了根边缘细胞活性,而加硅处理后细胞应对铝毒环境的细胞活性显著提高,加硅处理细胞内的铝含量和活性氧(reactive oxygen species,ROS)含量低于缺硅处理且加硅后细胞线粒体膜电位上升;铝毒抑制了豌豆根尖伸长,在pH 3.5铝处理条件下加硅缓解根尖抑制作用的效果不明显,但pH 4.5、5.5条件下根尖伸长量显著增加;随着铝处理pH值升高,根尖铝含量降低,且加硅处理后根尖的铝含量都高于缺硅处理;硅使得细胞壁上更多带负电的官能团参与抗铝胁迫,降低了细胞壁各组分(包括果胶、纤维素、半纤维素、蛋白质等)的吸收峰值;pH 4.5和5.5铝环境条件下细胞表面形成纳米硅壳,硅铝在细胞壁上沉积形成铝硅酸盐。结果表明,低pH条件下纳米硅在细胞上的矿化沉积能够缓解铝离子毒害作用。

    Abstract:

    The mechanism of nano silicon physiologically regulating the alleviation of aluminum toxicity in the root tip and root edge cells of pea under low pH including pH 3.5, pH 4.5, and pH 5.5 was analyzed by PEI–induced silica electrostatic adsorption to form nano-silica shells for biomimetic mineralization to study the effects of the mineralization of nano silicon on the protective mechanism of the root tip and root border cells of pea under different pH and aluminum environments. The results showed that the treatment of Aluminum at various levels of pH decreased the activity of root border cells, while the treatment of silicon significantly increased the activity of cell in response to aluminum toxicity. The content of aluminum and ROS in silicon treated cells were lower than that in silicon deficient cells, and the mitochondrial membrane potential of the cells increased after the addition of silicon. Aluminum toxicity inhibited the elongation of root tip in peas. The effect of adding silicon to alleviate the root tip inhibition under pH 3.5 with the treatment of aluminum was not significant, but the elongation of root tip was significantly increased under pH 4.5 and pH 5.5. As the pH of aluminum treatment increased, the content of aluminum in root tips decreased, and the content of aluminum in root tips after the treatment of adding silicon was higher than that after the treatment of silicon deficiency. Silicon enabled more negatively charged functional groups on the cell wall to participate in the resistance to aluminum stress, reducing the absorption peak of various components of the cell wall including pectin, cellulose, hemicellulose, proteins, etc. Nano silica shells were formed on the cell surface under pH 4.5 and pH 5.5 of aluminum environment, and silicon aluminum deposited on the cell wall to form aluminosilicates. It is indicated that the mineralization and deposition of nano silicon on cells under low pH can alleviate the toxic effects of aluminum ions.

    图1 pH 3.5、4.5、5.5铝溶液环境(100 μmol/L)下豌豆根边缘细胞活性Fig.1 The viability of pea root border cells under pH 3.5, 4.5, and 5.5 aluminum solution environments (100 μmol/L)
    图2 pH 3.5、4.5、5.5铝溶液环境(100 μmol/L)下豌豆根边缘细胞铝含量Fig.2 Effect of pH 3.5, 4.5, and 5.5 aluminum solution environments (100 μmol/L) on the aluminum content of pea root border cells
    图3 pH 3.5、4.5、5.5铝溶液环境(100 μmol/L)下豌豆根边缘细胞活性氧含量Fig.3 Effects of pH 3.5, 4.5, and 5.5 aluminum solution environments (100 μmol/L) on the reactive oxygen species content of pea root border cells
    图4 pH 3.5、4.5、5.5铝溶液环境(100 μmol/L)下豌豆根边缘细胞线粒体膜电位Fig.4 Effects of pH 3.5, 4.5, and 5.5 aluminum solution environments (100 μmol/L) on mitochondrial membrane potential in pea root marginal cells
    图5 pH 3.5、4.5、5.5铝溶液环境(100 μmol/L)下豌豆侧根相对伸长量Fig.5 Lateral relative root elongation of pea under pH 3.5, 4.5, and 5.5 aluminum solution environments (100 μmol/L)
    图6 pH 3.5、4.5、5.5铝溶液环境(100 μmol/L)下豌豆根尖铝含量Fig.6 Aluminum content in pea root tips under pH 3.5, 4.5, and 5.5 aluminum solution environments (100 μmol/L)
    图7 pH 3.5、4.5、5.5铝溶液环境(100 μmol/L)下豌豆根边缘细胞硅组分(4 000~500 cm-1)Fig.7 Cellular fractions of pea root border cells (4 000-500 cm-1 ) under pH 3.5, 4.5, and 5.5 aluminum solution environments (100 μmol/L)
    图8 pH 3.5、4.5、5.5铝溶液环境(100 μmol/L)下纳米硅对根边缘细胞壁硅铝结构分析的影响Fig.8 Silica-aluminum structural analysis of root border cell wall by nanosilica in pH 3.5, 4.5, and 5.5 aluminum solution environments (100 μmol/L)
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唐娇,冯英明,陈醒韵,郭依唯,郑雨欣,田晓,李学文,喻敏.低pH条件下纳米硅矿化沉积对豌豆根尖和根边缘细胞耐铝性的影响[J].华中农业大学学报,2025,44(1):137-147

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  • 收稿日期:2024-01-19
  • 在线发布日期: 2025-03-03
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