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ACC 脱氨酶产生菌 Achromobacter sp. 降低玉米植株的 Cd 毒性、吸收和金属转运基因表达。

Lowered Cd toxicity, uptake and expression of metal transporter genes in maize plant by ACC deaminase-producing bacteria Achromobacter sp.

机构信息

School of Life Science, Anhui Agricultural University, Hefei 230036, China.

School of Life Science, Anhui Agricultural University, Hefei 230036, China.

出版信息

J Hazard Mater. 2022 Feb 5;423(Pt A):127036. doi: 10.1016/j.jhazmat.2021.127036. Epub 2021 Aug 26.

DOI:10.1016/j.jhazmat.2021.127036
PMID:34481390
Abstract

In this study, an ACC deaminase-producing bacterial strain Achromobacter sp. A1 was isolated from maize rhizosphere soil, characterized and evaluated for the effects on cadmium (Cd) immobilization in solution/rhizosphere, physiological characteristics and the tissue Cd contents in maize and the molecular mechanisms involved by hydroponic and pot experiments. ACC deaminase activity of strain A1 was significantly enhanced by Cd addition and Cd concentration decreased (55.54-63.62%) in solution supplemented with various Cd concentrations. Strain A1 significantly increased the maize dry weights (30.77-105%) and chlorophyll content (7.46-14.46%), decreased MDA content (25.16-36.87%) and ethylene production (20.93-35.86%) in hydroponic experiment. Strain A1 significantly reduced the above-ground tissue Cd uptake by 12.64-33.68% and 42-48% in hydroponic and pot experiments, reduced the DTPA-extractable Cd content and elevated invertase, urease and catalase activity in rhizosphere soils. In addition, the expression levels of Cd transporter genes HMA3 and Nramp5 were significantly reduced in root and shoot after strain A1 inoculation. These results indicate that strain A1 has great potential for application as a novel and environmentally friendly inoculant to immobilize Cd and reduce maize Cd uptake in Cd-contaminated environments, and will improve the understanding of the relative molecular mechanisms underlying the response to strain A1 in maize plant.

摘要

在这项研究中,从玉米根际土壤中分离出一种产 ACC 脱氨酶的细菌菌株阿克默霍克氏菌 A1,对其进行了特性描述和评价,以研究其在溶液/根际中固定镉、生理特性、玉米组织中镉含量以及涉及的分子机制的影响,采用水培和盆栽实验进行。添加 Cd 后,菌株 A1 的 ACC 脱氨酶活性显著增强,溶液中添加不同 Cd 浓度后 Cd 浓度降低(55.54-63.62%)。菌株 A1 显著增加了玉米的干重(30.77-105%)和叶绿素含量(7.46-14.46%),降低了 MDA 含量(25.16-36.87%)和乙烯产量(20.93-35.86%)在水培实验中。菌株 A1 显著降低了地上组织对 Cd 的吸收,水培和盆栽实验分别降低了 12.64-33.68%和 42-48%,降低了 DTPA 可提取 Cd 含量,提高了根际土壤中的转化酶、脲酶和过氧化氢酶活性。此外,接种菌株 A1 后,根和茎中的 Cd 转运基因 HMA3 和 Nramp5 的表达水平显著降低。这些结果表明,菌株 A1 具有作为一种新型环保接种剂的巨大潜力,可用于固定 Cd,减少 Cd 污染环境中玉米对 Cd 的吸收,并将提高对菌株 A1 在玉米植物中响应的相关分子机制的理解。

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