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硼和镉对重瓣金光菊金属富集和细胞壁固定能力的协同效应。

Synergistic effects of boron and cadmium on the metal enrichment and cell wall immobilization capacity of Cosmosbipinnatus.

机构信息

College of Landscape Architecture, Sichuan Agricultural University, Chengdu 611130, China.

College of Landscape Architecture, Sichuan Agricultural University, Chengdu 611130, China.

出版信息

Plant Physiol Biochem. 2024 Nov;216:109178. doi: 10.1016/j.plaphy.2024.109178. Epub 2024 Oct 3.

Abstract

Cadmium (Cd), as a heavy metal pollutant, can seriously affect plant growth and development. Boron (B), as an indispensable nutrient element, plays an important role in plant growth and cell wall (CW) synthesis. However, the physiological effects of B and Cd on plant growth and the mechanism of Cd chelation by the CW remain unclear. Here, we investigate the effect of exogenous B on Cd accumulation in CW components of Cosmos bipinnatus roots and its mechanism of Cd mitigation. Under B deficiency and single Cd (30 μM) treatments, the growth of C. bipinnatus was significantly inhibited, but the addition of exogenous B significantly increased plant biomass, which increased the Cd content in the underground parts of C. bipinnatus by 20.18% and reduced the Cd translocation factor by 22.22%. Meanwhile, application of exogenous B affected the subcellular Cd content across various Cd forms and alleviated Cd-induced oxidative stress in C. bipinnatus. Additionally, exogenous B and Cd and their mixtures affected the functional groups of the root CW, the proportion of polysaccharide components, the Cd content of polysaccharides, and the polysaccharide uronic acid content of C. bipinnatus. However, B application increased 3-deoxy-oct-2-ulosonic acid content, pectin esterase activity, low esterified pectin content, and its Cd content by 149.52%, 55.69%, 206.38%, and 150.02%, respectively, compared to Cd treatment alone. Thus, our study showed that B mitigates the toxicity of Cd to plants, revealing the effect of B on the physiological aspects of Cd tolerance in plants.

摘要

镉(Cd)作为重金属污染物,会严重影响植物的生长和发育。硼(B)作为一种必需的营养元素,在植物生长和细胞壁(CW)合成中发挥着重要作用。然而,B 和 Cd 对植物生长的生理影响以及 CW 螯合 Cd 的机制尚不清楚。在这里,我们研究了外源 B 对天人菊根系 CW 成分中 Cd 积累的影响及其缓解 Cd 毒害的机制。在 B 缺乏和单一 Cd(30 μM)处理下,天人菊的生长受到显著抑制,但添加外源 B 可显著增加植物生物量,使天人菊地下部分的 Cd 含量增加 20.18%,Cd 迁移率降低 22.22%。同时,外源 B 的应用影响了各种 Cd 形态的亚细胞 Cd 含量,并缓解了 Cd 对天人菊的氧化应激。此外,外源 B 和 Cd 及其混合物影响了天人菊根 CW 的官能团、多糖成分的比例、多糖的 Cd 含量以及多糖中戊糖醛酸的含量。然而,与单独 Cd 处理相比,B 的应用增加了 3-脱氧-oct-2-ulosonic 酸含量、果胶酯酶活性、低酯化果胶含量及其 Cd 含量分别增加了 149.52%、55.69%、206.38%和 150.02%。因此,我们的研究表明,B 减轻了 Cd 对植物的毒性,揭示了 B 对植物 Cd 耐性生理方面的影响。

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