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丛枝菌根增强芦苇吸收镉的机制取决于磷浓度。

The mechanism of arbuscular mycorrhizal enhancing cadmium uptake in Phragmites australis depends on the phosphorus concentration.

机构信息

State Key Lab of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, No. 73, Huanghe Road, Nangang District, Harbin 150090, PR China.

State Key Lab of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, No. 73, Huanghe Road, Nangang District, Harbin 150090, PR China.

出版信息

J Hazard Mater. 2022 Oct 15;440:129800. doi: 10.1016/j.jhazmat.2022.129800. Epub 2022 Aug 18.

Abstract

Arbuscular mycorrhizal fungi (AMF) is a vital strategy to enhance the phytoremediation of cadmium (Cd) pollution. However, the function of AMF was influenced by phosphorus (P) concentration. To reveal the effect of AMF on the Cd accumulation of host plants under different P concentrations and how the AMF and P interact, this study comparatively analyzed the regulatory effects of AMF on the Cd response, extraction, and transportation processes of Phragmites australis (P. australis) under different P levels, and explored its physiological, biochemical and molecular biological mechanisms. The study showed that AMF could induce different growth allocation strategies in response to Cd stress. Moreover, AMF promoted plant Cd tolerance and detoxification by enhancing P uptake, Cd passivation, Cd retention in the cell wall, and functional group modulation. Under P starvation treatments, AMF promoted Cd uptake by inducing Cd to enter the iron pathway, increased the transport coefficient by 493.39%, and retained Cd in stems. However, these effects disappeared following the addition of P. Additionally, AMF up-regulated the expression of ZIP, ZIP, and NRAMP genes to promote cadmium uptake at low, medium, and high phosphorus levels, respectively. Thus, the Cd response mechanism of the AMF-P. australis symbiotic system was P dose-dependent.

摘要

丛枝菌根真菌(AMF)是增强植物修复镉(Cd)污染的重要策略。然而,AMF 的功能受到磷(P)浓度的影响。为了揭示 AMF 在不同 P 浓度下对宿主植物 Cd 积累的影响,以及 AMF 和 P 如何相互作用,本研究比较分析了 AMF 对不同 P 水平下芦苇(P. australis)Cd 响应、提取和运输过程的调控作用,并探讨了其生理、生化和分子生物学机制。研究表明,AMF 可以根据 Cd 胁迫做出不同的生长分配策略。此外,AMF 通过增强 P 吸收、Cd 钝化、细胞壁 Cd 保留和功能基团调节来促进植物 Cd 耐受性和解毒。在 P 饥饿处理下,AMF 通过诱导 Cd 进入铁途径来促进 Cd 吸收,将运输系数提高了 493.39%,并将 Cd 保留在茎中。然而,在添加 P 后,这些效果消失了。此外,AMF 上调了 ZIP、ZIP 和 NRAMP 基因的表达,分别在低、中、高磷水平下促进 Cd 的吸收。因此,AMF-P. australis 共生系统的 Cd 响应机制是依赖于 P 剂量的。

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