Silicon reduces lead accumulation in Moso bamboo via immobilization and suppression of metal cation transporter genes in roots.

IF 3.5 2区 农林科学 Q1 FORESTRY
Fan Yang, Xuanhong Xie, Yu Zhao, Zetao Jin, Xianyu Pan, Zhenming Shen, Lin Hu, Xuejun Yu, Ji Feng Shao
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Abstract

Lead (Pb) is a hazardous element that affects the growth and development of plants, while silicon (Si) is a beneficial element for alleviating the stress caused by heavy metals, including Pb. However, the mechanisms by which Si reduces Pb accumulation in Moso bamboo (Phyllostachys edulis (Carr ·) H · de Lehaie) remain unclear. In this study, physiological assessments and transcriptome analyses were conducted to investigate the interaction between Si and Pb. Our findings showed that Si application has no significant effect on alleviating Pb-induced inhibition of root elongation and dry weight in short-term and long-term experiments, respectively. However, it did rescue leaf yellowing and reduce Pb accumulation, particularly in the shoot. Pre-treatment with Si led to a reduction in Pb uptake, translocation and accumulation, coupled with an increase in Pb fixation within the hemicellulose of the root cell wall, resulting in a lower Pb concentration in the cell sap. At the cellular level, Pb was found to be distributed in all cells of roots, and Si pretreatment did not alter Pb distribution. Additionally, Si application downregulated the expression of genes related to ABC and metal cation transporters. These findings indicate that Si reduces Pb accumulation in Moso bamboo by immobilizing Pb in the hemicellulose of root cell walls and downregulating the expression of transporter genes involved in Pb uptake and transport.

硅通过固定和抑制毛竹根部金属阳离子转运体基因来减少铅的积累。
铅(Pb)是影响植物生长发育的有害元素,而硅(Si)是缓解铅等重金属胁迫的有益元素。然而,硅减少毛竹中铅积累的机制尚不清楚。在这项研究中,通过生理评估和转录组分析来研究Si和Pb之间的相互作用。我们的研究结果表明,在短期和长期试验中,施用硅对减轻铅诱导的根伸长和干重抑制分别没有显著作用。但能有效缓解叶片黄化,减少铅的积累,特别是在茎部。硅预处理导致铅的吸收、转运和积累减少,加上根细胞壁半纤维素内铅的固定增加,导致细胞液中铅浓度降低。在细胞水平上,发现铅分布在根的所有细胞中,硅预处理没有改变铅的分布。此外,Si的应用下调了ABC和金属阳离子转运体相关基因的表达。上述结果表明,硅通过将铅固定在毛竹根细胞壁的半纤维素中,并下调参与铅吸收和运输的转运基因的表达,减少了毛竹根中铅的积累。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Tree physiology
Tree physiology 农林科学-林学
CiteScore
7.10
自引率
7.50%
发文量
133
审稿时长
1 months
期刊介绍: Tree Physiology promotes research in a framework of hierarchically organized systems, measuring insight by the ability to link adjacent layers: thus, investigated tree physiology phenomenon should seek mechanistic explanation in finer-scale phenomena as well as seek significance in larger scale phenomena (Passioura 1979). A phenomenon not linked downscale is merely descriptive; an observation not linked upscale, might be trivial. Physiologists often refer qualitatively to processes at finer or coarser scale than the scale of their observation, and studies formally directed at three, or even two adjacent scales are rare. To emphasize the importance of relating mechanisms to coarser scale function, Tree Physiology will highlight papers doing so particularly well as feature papers.
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