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短期内,硅能减少镉的吸收,增加根到茎的转运,但不影响大麻(Cannabis sativa L.)幼苗的生长。

Silicon reduces cadmium absorption and increases root-to-shoot translocation without impacting growth in young plants of hemp (Cannabis sativa L.) on a short-term basis.

机构信息

Groupe de Recherche en Physiologie végétale, Earth and Life Institute (Agronomy), Université catholique de Louvain, 5 (Bte 7.07.13) Place Croix du Sud, 1348, Louvain-la-Neuve, Belgium.

Environmental Research and Innovation (ERIN) Department, Luxembourg Institute of Science and Technology (LIST), Hautcharage, Luxembourg.

出版信息

Environ Sci Pollut Res Int. 2021 Jul;28(28):37963-37977. doi: 10.1007/s11356-021-12912-y. Epub 2021 Mar 16.

Abstract

Textile hemp (Cannabis sativa L.) is a non-edible multipurpose crop suitable for fiber production and/or phytoremediation on moderately heavy metal-contaminated soils. Experiments were conducted in nutrient solution to assess the short-term impact of silicon (Si), a well-known beneficial element, on plants exposed to 20 μM cadmium (Cd) in nutrient solution. Cd decreased plant growth and affected photosynthesis through non-stomatal effects. Cd translocation factor was higher than 1, confirming the interest of hemp for phytoextraction purposes. Additional Si did not improve plant growth after 1 week of treatment but decreased Cd accumulation in all organs and improved water use efficiency through a decrease in transpiration rate. Si had only marginal impact on Cd distribution among organs. It increased glutathione and phytochelatin synthesis allowing the plants to efficiently cope with oxidative stress through the improvement of Cd sequestration on thiol groups in the roots. Si may thus have a fast impact on the plant behavior before the occurrence of plant growth stimulation.

摘要

纺织用大麻(Cannabis sativa L.)是一种非食用多用途作物,适合在中度重金属污染土壤上生产纤维和/或进行植物修复。本实验在营养液中进行,以评估硅(Si)作为一种已知的有益元素,对暴露于营养液中 20 μM 镉(Cd)的植物的短期影响。Cd 会抑制植物生长,并通过非气孔效应影响光合作用。Cd 迁移因子大于 1,这证实了大麻具有用于植物提取的潜力。额外添加 Si 虽然不能改善处理 1 周后的植物生长,但能减少各器官中 Cd 的积累,并通过降低蒸腾速率来提高水分利用效率。Si 对 Cd 在器官间的分布影响不大。它增加了谷胱甘肽和植物螯合肽的合成,使植物能够通过在根中巯基上对 Cd 的螯合来有效应对氧化应激。因此,Si 可能会在植物生长受到刺激之前,对植物的行为产生快速影响。

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