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高镉积累水稻(Oryza sativa L.)耐受镉过程中的生理响应。

Physiological responses involved in cadmium tolerance in a high-cadmium-accumulating rice (Oryza sativa L.) line.

机构信息

College of Resources, Sichuan Agricultural University, 211 Huimin Road, Chengdu, 611130, Sichuan, China.

Plant Ecology, Institute of Plant Science and Microbiology, Universität Hamburg, Ohnhorststr, 18, 22609, Hamburg, Germany.

出版信息

Environ Sci Pollut Res Int. 2021 Aug;28(31):41736-41745. doi: 10.1007/s11356-021-12956-0. Epub 2021 Mar 31.

Abstract

The disparity of tolerance in plants in response to Cd stress is associated with multiple physiological processes. A pot experiment was conducted to investigate the physiological properties involved in Cd tolerance of a high-cadmium (Cd)-accumulating rice line (Lu527-8) in comparison with a normal rice line (Lu527-4) under different levels of Cd exposure. Lu527-8 showed higher biomass and Cd concentrations compared with Lu527-4. The tolerance index (TI), bioconcentration factor (BCF), and translocation factor (TF) of Lu527-8 could be up to 3.08, 1.48, and 4.50 times these of Lu527-4, respectively. The two rice lines owned a uniform strategy to reduce Cd toxicity in root and stem by Cd deposition in cell wall and compartmentalization in vacuoles instead of keeping Cd in organelles. For Lu527-8, the higher distribution proportions of Cd combined with cell wall in leaf was linked to its higher Cd tolerance in comparison with Lu527-4. Lu527-8 showed a lower decline in membrane stability, antioxidation, photosynthetic parameters, and pigments than Lu527-4 when exposed to Cd stress. Taken together, the results demonstrated that higher Cd tolerance in high-Cd-accumulating rice Lu527-8 is closely linked to its greater abilities of cell wall fixation in leaf, oxidation resistance, as well as osmotic regulation and photosynthesis.

摘要

植物对镉胁迫的耐受性差异与其多种生理过程有关。采用盆栽试验,研究了不同镉暴露水平下高镉(Cd)积累水稻品种(Lu527-8)与普通水稻品种(Lu527-4)对Cd 耐性的生理特性。与 Lu527-4 相比,Lu527-8 的生物量和 Cd 浓度更高。Lu527-8 的耐性指数(TI)、生物浓缩系数(BCF)和转运系数(TF)分别可达 Lu527-4 的 3.08、1.48 和 4.50 倍。这两个水稻品种通过将 Cd 沉积在细胞壁和液泡区室化来减少根和茎中 Cd 的毒性,而不是将 Cd 保留在细胞器中,从而采用了统一的策略。对于 Lu527-8,与 Lu527-4 相比,其叶片中与细胞壁结合的 Cd 分布比例较高,这与其更高的 Cd 耐性有关。与 Lu527-4 相比,Lu527-8 暴露于 Cd 胁迫时,膜稳定性、抗氧化、光合参数和色素下降幅度较低。综上所述,这些结果表明,高 Cd 积累水稻 Lu527-8 具有更高的 Cd 耐性,与其叶片中更强的细胞壁固定能力、抗氧化能力以及渗透调节和光合作用能力密切相关。

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