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两种不同籽粒镉积累型小麦(Triticum aestivum L.)幼苗根镉径向运移的比较研究。

A comparative study of root cadmium radial transport in seedlings of two wheat (Triticum aestivum L.) genotypes differing in grain cadmium accumulation.

机构信息

Ministry of Education Key Laboratory of Environmental Remediation and Ecological Health, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou, 310058, China.

College of Resources, Sichuan Agricultural University, Chengdu, 611130, China.

出版信息

Environ Pollut. 2020 Nov;266(Pt 3):115235. doi: 10.1016/j.envpol.2020.115235. Epub 2020 Jul 17.

Abstract

The radial transport of cadmium (Cd) is essential for Cd influx in roots. The role of radial transport pathway on the Cd translocation from root to shoot among wheat genotypes are still poorly understood. This study explored the role of apoplastic and symplastic pathway on root Cd uptake and root-to-shoot translocation in Zhenmai 10 (ZM10, high Cd in grains) and Aikang 58 (AK58, low Cd in grains). Under Cd treatment, the deposition of Casparian strips (CSs) and suberin lamellae (SL) initiated closer to the root apex in ZM10 than that in AK58, which resulted in the lower Cd concentration in apoplastic fluid of ZM10. Simultaneously, Cd-induced expression levels of genes related to Cd uptake in roots were significantly higher in AK58 by contrast with ZM10, contributing to the symplastic Cd accumulation in AK58 root. Moreover, the addition of metabolic inhibitor CCCP noticeably decreased the Cd accumulation in root of both genotypes. Intriguingly, compared to ZM10, greater amounts of Cd were sequestrated in the cell walls and vacuoles in roots of AK58, limiting the translocation of Cd from root to shoot. Furthermore, the elevated TaHMA2 expression in ZM10 indicates that ZM10 had a higher capacity of xylem loading Cd than AK58. All of these results herein suggest that the radial transport is significant for Cd accumulation in roots, but it cannot explain the difference in root-to-shoot translocation of Cd in wheat genotypes with contrast Cd accumulation in grains.

摘要

镉(Cd)的径向运输对于根部的 Cd 流入至关重要。不同小麦基因型间,径向运输途径在 Cd 从根部向地上部转移中的作用仍知之甚少。本研究探讨了质外体和共质体途径在 Zhenmai 10(ZM10,籽粒中 Cd 含量高)和 Aikang 58(AK58,籽粒中 Cd 含量低)根部 Cd 吸收和根到地上部转移中的作用。在 Cd 处理下,ZM10 根尖附近比 AK58 更早地形成了凯氏带(CSs)和栓质层(SL),导致 ZM10 质外体液中的 Cd 浓度更低。同时,与 ZM10 相比,Cd 诱导 AK58 根部 Cd 吸收相关基因的表达水平显著升高,导致 AK58 根部共质体 Cd 积累。此外,代谢抑制剂 CCCP 的添加明显降低了两个基因型根部的 Cd 积累。有趣的是,与 ZM10 相比,更多的 Cd 被 AK58 根部的细胞壁和液泡固定,限制了 Cd 从根部向地上部的转移。此外,ZM10 中 TaHMA2 表达水平的升高表明 ZM10 木质部装载 Cd 的能力高于 AK58。所有这些结果表明,径向运输对根部 Cd 积累很重要,但不能解释在籽粒 Cd 积累差异较大的小麦基因型中 Cd 从根部向地上部转移的差异。

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