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亚硒酸盐通过调节转运基因同时减轻水稻(Oryza sativa L.)中镉和砷的积累。

Selenate simultaneously alleviated cadmium and arsenic accumulation in rice (Oryza sativa L.) via regulating transport genes.

机构信息

Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, College of Resources and Environmental Sciences, China Agricultural University, Beijing, 100193, People's Republic of China.

Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, College of Resources and Environmental Sciences, China Agricultural University, Beijing, 100193, People's Republic of China.

出版信息

Environ Pollut. 2024 Oct 15;359:124725. doi: 10.1016/j.envpol.2024.124725. Epub 2024 Aug 12.

Abstract

Cadmium (Cd) and arsenic (As) have contrasting biogeochemical behaviors in paddy soil, which posed an obstacle for reducing their accumulation in rice (Oryza sativa L.) simultaneously. In this study, selenate exhibited a more effective ability than selenite on simultaneous alleviation of Cd and As accumulation in rice under Cd-As co-exposure, and the mechanisms need to be further investigated. The results showed that selenate significantly decreased the root Cd and As contents by 59%-83% and 43%-72% compared to Cd-As compound exposure, respectively. Correspondingly, it significantly down-regulated the expression of uptake-related genes OsNramp5 (87.1%) and OsLsi1 (95.5%) in rice roots. Decreases in Cd (64.5%) and As (16.2%) contents in shoots were also found after selenate addition. Moreover, selenate may promoted the reduction of As(V) to As(Ⅲ) and As(III) efflux to the external medium, resulting in decreased As accumulation and As(Ⅲ) proportion in rice shoots and roots. In addition, selenate could promote the binding of Cd (by 14%-24%) and As (by 9%-15%) in the cell wall, and significantly reduced the oxidative stress by elevating levels of antioxidant enzymes (by 10%-105%) and thiol compounds (by 6%-210%). Additionally, selenate significantly down-regulated the expression of OsNramp1 (49.3%) and OsLsi2 (82.1%) associated with Cd and As transport in rice. These findings suggest selenate has the potential to be an effective material for the simultaneous reduction of Cd and As accumulation in rice under Cd-As co-contamination.

摘要

镉(Cd)和砷(As)在稻田中有相反的生物地球化学行为,这对同时减少水稻(Oryza sativa L.)中的积累构成了障碍。在本研究中,与 Cd-As 复合暴露相比,亚硒酸盐在 Cd-As 共暴露下对同时减轻水稻中 Cd 和 As 积累的能力更有效,其机制需要进一步研究。结果表明,与 Cd-As 复合暴露相比,亚硒酸盐分别显著降低了根中 Cd 和 As 的含量,降幅分别为 59%-83%和 43%-72%。相应地,它显著下调了水稻根部摄取相关基因 OsNramp5(87.1%)和 OsLsi1(95.5%)的表达。添加亚硒酸盐后,也发现地上部分 Cd(64.5%)和 As(16.2%)的含量降低。此外,亚硒酸盐可能促进了 As(V)还原为 As(Ⅲ)和 As(Ⅲ)向外部介质的外排,从而降低了水稻地上部和根部的 As 积累和 As(Ⅲ)比例。此外,亚硒酸盐可以促进 Cd(增加 14%-24%)和 As(增加 9%-15%)与细胞壁的结合,并通过提高抗氧化酶(增加 10%-105%)和巯基化合物(增加 6%-210%)水平显著降低氧化应激。此外,亚硒酸盐显著下调了与 Cd 和 As 转运相关的 OsNramp1(49.3%)和 OsLsi2(82.1%)在水稻中的表达。这些发现表明,亚硒酸盐有可能成为同时减少 Cd-As 共污染下水稻中 Cd 和 As 积累的有效物质。

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