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有机或无机硒缓解大豆(Glycine max L.)镉毒害:提高抗氧化能力和酶基因表达,降低镉吸收。

Alleviation of cadmium toxicity in soybean (Glycine max L.): Up-regulating antioxidant capacity and enzyme gene expressions and down-regulating cadmium uptake by organic or inorganic selenium.

机构信息

Biochemistry Department, Faculty of Agriculture, Fayoum University, Fayoum, 63514, Egypt.

Center for Sustainability Science, The Nature Conservancy, Arlington, VA, 22203, USA.

出版信息

Plant Physiol Biochem. 2024 Oct;215:109068. doi: 10.1016/j.plaphy.2024.109068. Epub 2024 Aug 26.

Abstract

Although much interest has been focused on the role of selenium (Se) in plant nutrition over the last 20 years, the influences of organic selenium (selenomethionine; Se-Met) and inorganic selenium (potassium selenite; Se-K) on the growth and physiological characters of cadmium (Cd)-stressed Glycine max L.) seedlings have not yet been studied. In this study, the impacts of Se-Met or Se-K on the growth, water physiological parameters (gaseous exchange and leaf water content), photosynthetic and antioxidant capacities, and hormonal balance of G. max seedlings grown under 1.0 mM Cd stress were studied. The results showed that 30 μM Se-K up-regulates water physiological parameters, photosynthetic indices, antioxidant systems, enzymatic gene expression, total antioxidant activity (TAA), and hormonal balance. In addition, it down-regulates levels of reactive oxygen species (ROS; superoxide free radicals and hydrogen peroxide), oxidative damage (malondialdehyde content as an indicator of lipid peroxidation and electrolyte leakage), Cd translocation factor, and Cd content of Cd-stressed G. max seedlings. These positive findings were in favor of seedling growth and development under Cd stress. However, 50 μM Se-Met was more efficient than 30 μM Se-K in promoting the above-mentioned parameters of Cd-stressed G. max seedlings. From the current results, we conclude Se-Met could represent a promising strategy to contribute to the development and sustainability of crop production on soils contaminated with Cd at a concentration of up to 1.0 mM. However, further work is warranted to better understand the precise mechanisms of Se-Met action under Cd stress conditions.

摘要

尽管在过去的 20 年中,人们对硒(Se)在植物营养中的作用产生了浓厚的兴趣,但有机硒(蛋氨酸硒;Se-Met)和无机硒(亚硒酸钾;Se-K)对镉(Cd)胁迫下大豆(Glycine max L.)幼苗生长和生理特性的影响尚未得到研究。在这项研究中,研究了 Se-Met 或 Se-K 对在 1.0 mM Cd 胁迫下生长的大豆幼苗的生长、水分生理参数(气体交换和叶片水分含量)、光合作用和抗氧化能力以及激素平衡的影响。结果表明,30 μM Se-K 上调了水分生理参数、光合作用指标、抗氧化系统、酶基因表达、总抗氧化活性(TAA)和激素平衡。此外,它还下调了活性氧(ROS;超氧自由基和过氧化氢)、氧化损伤(丙二醛含量作为脂质过氧化和电解质渗漏的指标)、Cd 转运因子和 Cd 含量。这些积极的发现有利于 Cd 胁迫下幼苗的生长和发育。然而,50 μM Se-Met 比 30 μM Se-K 更有效地促进 Cd 胁迫下大豆幼苗的上述参数。从目前的结果来看,我们得出结论,Se-Met 可以作为一种有前途的策略,有助于在高达 1.0 mM 的 Cd 污染土壤上发展和维持作物生产。然而,需要进一步的工作来更好地理解 Se-Met 在 Cd 胁迫条件下的作用的精确机制。

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