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镉影响 L. 根部的代谢和元素分布。

Cd influences metabolism and elemental distribution in roots of L.

机构信息

a Plant Physiology and Biochemistry Division, Department of Botany , University of Calicut , Malappuram , Kerala , India.

出版信息

Int J Phytoremediation. 2019;21(9):866-877. doi: 10.1080/15226514.2019.1577356. Epub 2019 Apr 24.

Abstract

Effect of cadmium (Cd) on the primary metabolic activities and elemental distribution in roots was explored in L., a halophyte with phytostabilization potential. The rate of photosynthesis decreased in the CdCl treated plants and this reduction was mainly attributed to the reduction of leaf area, photosynthetic pigments, impaired gaseous exchange caused by the stomatal closure and tissue water status. However, respiration rate was significantly higher in the CdCl treated plants which aid the plant with additional energy required for the metabolic activities. Distribution of essential elements in the roots exhibited significant differences from that of control, which indicate the nutritional adaptation developed by under the influence of toxic metal ions. Thus, Cd toxicity is neutralized through the resource allocation from the growth process to processes that increase the fitness of the plant to encounter adverse environmental condition. In addition, the absorbed Cd is retained in the cortical cells of root thereby preventing the upward movement to shoot thereby making the plant a potential candidate for phytostabilization of Cd.

摘要

探讨了镉(Cd)对具有植物稳定化潜力的盐生植物 L. 的根系初级代谢活动和元素分布的影响。在 CdCl 处理的植物中,光合作用速率降低,这种降低主要归因于叶面积、光合色素减少、气孔关闭导致的气体交换受损以及组织水势。然而,CdCl 处理的植物的呼吸速率显著升高,这为植物提供了代谢活动所需的额外能量。根系中必需元素的分布与对照相比有显著差异,这表明在有毒金属离子的影响下,植物发展了营养适应性。因此,通过将资源从生长过程分配到增加植物适应不利环境条件的过程中,Cd 毒性得到了中和。此外,吸收的 Cd 被保留在根的皮层细胞中,从而防止其向上移动到地上部分,使植物成为 Cd 植物稳定化的潜在候选者。

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