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短期水相暴露于无机汞后盐沼植物中揭示的氧化还原稳态

Redox Homeostasis Disclosed in the Saltmarsh Plant upon Short Waterborne Exposure to Inorganic Mercury.

作者信息

Pereira Patrícia, Pereira Joana Luísa, Marques Ana, Marques Carlos, Brandão Fátima, Cesário Rute, Frankenbach Silja, Serôdio João, Gonçalves Fernando J M, Canário João, Pacheco Mário

机构信息

CESAM and Department of Biology, University of Aveiro, 3810-193 Aveiro, Portugal.

Centro de Química Estrutural, Institute of Molecular Sciences and Department of Chemical Engineering, Instituto Superior Técnico, Universidade de Lisboa, 1049-001 Lisboa, Portugal.

出版信息

Toxics. 2024 Mar 12;12(3):211. doi: 10.3390/toxics12030211.

Abstract

The saltmarsh plant was shortly exposed to realistic levels of inorganic mercury (iHg) with the aim of investigating the adaptative processes of the roots and leaves regarding redox homeostasis, physiology, and Hg accumulation. Plants were collected at a contaminated (CONT) and a reference (REF) site to address the interference of contamination backgrounds. The influence of major abiotic variables (i.e., temperature and light) was also examined. Total Hg levels, antioxidant enzymes, lipid peroxidation (LPO), and photosynthetic activity were analyzed after 2 and 4 h of exposure. A poor accumulation of Hg in the roots was noticed, and no translocation to the stems and leaves was found, but plants from the CONT site seemed more prone to iHg uptake (in winter). Despite this, antioxidant modulation in the roots and leaves was found, disclosing, in winter, higher thresholds for the induction of enzymatic antioxidants in CONT leaves compared to REF plants, denoting that the former are better prepared to cope with iHg redox pressure. Consistently, CONT leaves exposed to iHg had remarkably lower LPO levels. Exposure did not impair photosynthetic activity, pinpointing ' ability to cope with iHg toxicity under very-short-term exposure. Biochemical changes were noticed before enhancements in accumulation, reinforcing the relevance of these responses in precociously signaling iHg toxicity.

摘要

将盐沼植物短期暴露于实际水平的无机汞(iHg)中,目的是研究其根和叶在氧化还原稳态、生理学及汞积累方面的适应过程。在一个受污染(CONT)地点和一个参考(REF)地点采集植物,以应对污染背景的干扰。还研究了主要非生物变量(即温度和光照)的影响。在暴露2小时和4小时后,分析了总汞水平、抗氧化酶、脂质过氧化(LPO)和光合活性。发现根中汞的积累较少,且未发现汞向茎和叶的转运,但来自CONT地点的植物(在冬季)似乎更易于吸收iHg。尽管如此,仍发现根和叶中的抗氧化调节,结果表明,在冬季,CONT叶中酶促抗氧化剂诱导的阈值高于REF植物,这表明前者更有能力应对iHg的氧化还原压力。同样,暴露于iHg的CONT叶的LPO水平显著较低。暴露并未损害光合活性,这表明其在非常短期暴露下有应对iHg毒性的能力。在积累增强之前就注意到了生化变化,这加强了这些反应在早期指示iHg毒性方面的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eadf/10974591/1862eb296809/toxics-12-00211-g001.jpg

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