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镉的氧化和交互挑战以及海洋酸化对光滑扇贝(Flexopecten glaber)的影响

Oxidative and interactive challenge of cadmium and ocean acidification on the smooth scallop Flexopecten glaber.

作者信息

Nardi Alessandro, Benedetti Maura, Fattorini Daniele, Regoli Francesco

机构信息

Department of Life and Environmental Sciences (DiSVA), Polytechnic University of Marche, Ancona, Italy.

Department of Life and Environmental Sciences (DiSVA), Polytechnic University of Marche, Ancona, Italy; CoNISMa, Consorzio Interuniversitario per le Scienze del Mare, Roma, Italy.

出版信息

Aquat Toxicol. 2018 Mar;196:53-60. doi: 10.1016/j.aquatox.2018.01.008. Epub 2018 Jan 8.

DOI:10.1016/j.aquatox.2018.01.008
PMID:29334672
Abstract

Ocean acidification (OA) may affect sensitivity of marine organisms to metal pollution modulating chemical bioavailability, bioaccumulation and biological responsiveness of several cellular pathways. In this study, the smooth scallop Flexopecten glaber was exposed to various combinations of reduced pH (pH/pCO 7.4/∼3000 μatm) and Cd (20 μg/L). The analyses on cadmium uptake were integrated with those of a wide battery of biomarkers including metallothioneins, single antioxidant defenses and total oxyradical scavenging capacity in digestive gland and gills, lysosomal membrane stability and onset of genotoxic damage in haemocytes. Reduced pH slightly increased concentration of Cd in scallop tissues, but no effects were measured in terms of metallothioneins. Induction of some antioxidants by Cd and/or low pH in the digestive gland was not reflected in variations of the total oxyradical scavenging capacity, while the investigated stressors caused a certain inhibition of antioxidants and reduction of the scavenging capacity toward peroxyl radical in the gills. Lysosomal membrane stability and onset of genotoxic damages showed high sensitivity with possible synergistic effects of the investigated factors. The overall results suggest that indirect effects of ocean acidification on metal accumulation and toxicity are tissue-specific and modulate oxidative balance through different mechanisms.

摘要

海洋酸化(OA)可能会通过调节化学物质的生物可利用性、生物累积以及多种细胞途径的生物反应性,影响海洋生物对金属污染的敏感性。在本研究中,将光滑扇贝(Flexopecten glaber)暴露于不同组合的降低pH值(pH/pCO₂ 7.4/约3000 μatm)和镉(20 μg/L)环境中。对镉吸收的分析与一系列广泛的生物标志物分析相结合,这些生物标志物包括消化腺和鳃中的金属硫蛋白、单一抗氧化防御以及总氧自由基清除能力、溶酶体膜稳定性和血细胞中的遗传毒性损伤起始情况。降低pH值略微增加了扇贝组织中镉的浓度,但在金属硫蛋白方面未检测到影响。镉和/或低pH值对消化腺中某些抗氧化剂的诱导并未反映在总氧自由基清除能力的变化上,而所研究的应激源导致鳃中抗氧化剂受到一定抑制,对过氧自由基的清除能力降低。溶酶体膜稳定性和遗传毒性损伤的起始表现出高敏感性,所研究的因素可能存在协同效应。总体结果表明,海洋酸化对金属积累和毒性的间接影响具有组织特异性,并通过不同机制调节氧化平衡。

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