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南极关键物种科氏突眼乌贼对多种应激源的氧化应激反应:温度、酸化和镉暴露之间的相互作用

Oxidative responsiveness to multiple stressors in the key Antarctic species, Adamussium colbecki: Interactions between temperature, acidification and cadmium exposure.

作者信息

Benedetti Maura, Lanzoni Ilaria, Nardi Alessandro, d'Errico Giuseppe, Di Carlo Marta, Fattorini Daniele, Nigro Marco, Regoli Francesco

机构信息

Dipartimento di Scienze della Vita e dell'Ambiente, Università Politecnica delle Marche, Ancona, Italy.

Dipartimento di Medicina Clinica e Sperimentale, Università di Pisa, Italy.

出版信息

Mar Environ Res. 2016 Oct;121:20-30. doi: 10.1016/j.marenvres.2016.03.011. Epub 2016 Apr 1.

DOI:10.1016/j.marenvres.2016.03.011
PMID:27085201
Abstract

High-latitude marine ecosystems are ranked to be among the most sensitive regions to climate change since highly stenothermal and specially adapted organisms might be seriously affected by global warming and ocean acidification. The present investigation was aimed to provide new insights on the sensitivity to such environmental stressors in the key Antarctic species, Adamussium colbecki, focussing also on their synergistic effects with cadmium exposure, naturally abundant in this area for upwelling phenomena. Scallops were exposed for 2 weeks to various combinations of Cd (0 and 40 μgL-1), pH (8.05 and 7.60) and temperature (-1 and +1 °C). Beside Cd bioaccumulation, a wide panel of early warning biomarkers were analysed in digestive glands and gills including levels of metallothioneins, individual antioxidants and total oxyradical scavenging capacity, onset of oxidative cell damage like lipid peroxidation, lysosomal stability, DNA integrity and peroxisomal proliferation. Results indicated reciprocal interactions between multiple stressors and their elaboration by a quantitative hazard model based on the relevance and magnitude of effects, highlighted a different sensitivity of analysed tissues. Due to cellular adaptations to high basal Cd content, digestive gland appeared more tolerant toward other prooxidant stressors, but sensitive to variations of the metal. On the other hand, gills were more affected by various combinations of stressors occurring at higher temperature.

摘要

高纬度海洋生态系统被列为对气候变化最敏感的区域之一,因为高度狭温性且特别适应环境的生物可能会受到全球变暖和海洋酸化的严重影响。本研究旨在深入了解关键南极物种——科氏突眼贝对这类环境压力源的敏感性,同时也关注它们与镉暴露的协同效应,该区域因上升流现象镉含量自然丰富。将扇贝暴露于镉(0和40μg L-1)、pH值(8.05和7.60)和温度(-1和+1°C)的各种组合下2周。除了镉生物积累外,还分析了消化腺和鳃中一系列广泛的早期预警生物标志物,包括金属硫蛋白水平、单个抗氧化剂和总氧自由基清除能力、氧化细胞损伤如脂质过氧化的发生、溶酶体稳定性、DNA完整性和过氧化物酶体增殖。结果表明多种压力源之间存在相互作用,并通过基于效应的相关性和强度的定量危害模型对其进行了阐述,突出了所分析组织的不同敏感性。由于细胞对高基础镉含量的适应性,消化腺对其他促氧化应激源表现出更高的耐受性,但对金属变化敏感。另一方面,鳃受较高温度下各种压力源组合的影响更大。

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