A multi-comprehensive approach to assess the responses of the Mediterranean mussel Mytilus galloprovincialis (Lamarck, 1919) to a simulation of a diesel-oil mixture spill

IF 4.1 2区 环境科学与生态学 Q1 MARINE & FRESHWATER BIOLOGY Aquatic Toxicology Pub Date : 2025-02-01 DOI:10.1016/j.aquatox.2024.107188
F. Bertini , V. Catania , L. Scirè Calabrisotto , M. Dara , L. Bisanti , C. La Corte , M. Staropoli , D. Piazzese , M.G. Parisi , D. Parrinello , M. Cammarata
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Abstract

Oil spills are a major cause of pollution impacting marine ecosystems. In this work, the effects of short-term exposure to three different concentrations of a hydrocarbon mixture (HC), that simulated the action of such an event, were investigated on Mytilus galloprovincialis specimens. Physiological effects were measured using a battery of biomarkers consisting of cellular activity (phagocytosis), immune-related enzymes, chaperonins (HSP70 and HSC70), and histomorphological alterations. Different concentrations of HC led to a significant decrease in phagocytosis, especially following high concentrations. Immune-related enzymes evaluated in hemolymph and digestive gland extract showed up-regulation, suggesting the activation of antioxidant, detoxicant, and inflammatory responses. Morphological alterations of digestive gland tubules were observed after exposure to the HC. HSP70 and HSC70 activity was up regulated following the treatments, indicating their involvement in maintaining organism homeostasis. In addition, the diversity and composition of hemolymph and digestive gland microbiota exposed to HC were analyzed by automated ribosomal intergenic spacer analysis (ARISA) and a Next Generation Sequencing (NGS) approach to evaluate the connection with hydrocarbon contamination. Metagenomic analysis revealed significant differences in the hemolymph and digestive gland microbiota composition between mussels exposed and unexposed to HC. Exposure to increasing HC concentrations had a positive effect on microbial diversity with clear adaptative responses, and an increase in the relative abundance of several known degrading bacterial genera, including Alcanivorax, Roseovarius, Pseudomonas, Vibrio, Oleibacter. These results show the utility of a multi-comprehensive approach to evaluating functional adaptation in terms of immunological dysfunctions and microbiota alteration in the sentinel organism M. galloprovincialis.

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评估地中海贻贝(Mytilus galloprovincialis, Lamarck, 1919)对柴油混合物泄漏模拟的反应的多综合方法
石油泄漏是影响海洋生态系统污染的主要原因。在这项工作中,短期暴露于三种不同浓度的碳氢化合物混合物(HC)的影响,模拟了这样一个事件的作用,对Mytilus galloprovincialis标本进行了研究。生理效应通过一系列生物标志物来测量,这些生物标志物包括细胞活性(吞噬)、免疫相关酶、伴侣蛋白(HSP70和HSC70)和组织形态学改变。不同浓度的HC导致吞噬能力显著下降,特别是在高浓度后。血淋巴和消化腺提取物中免疫相关酶显示上调,提示激活了抗氧化、解毒和炎症反应。结果表明,HC对消化腺小管有明显的形态学改变。HSP70和HSC70活性在处理后被上调,表明它们参与维持生物体内平衡。此外,通过自动核糖体基因间间隔分析(ARISA)和下一代测序(NGS)方法分析HC暴露的血淋巴和消化腺微生物群的多样性和组成,以评估其与碳氢化合物污染的关系。宏基因组分析显示,暴露于HC和未暴露于HC的贻贝在血淋巴和消化腺微生物群组成上存在显著差异。暴露于不断增加的HC浓度对微生物多样性具有明显的适应性反应,并增加了几种已知降解细菌属的相对丰度,包括Alcanivorax, Roseovarius, Pseudomonas, Vibrio, Oleibacter。这些结果表明,在免疫功能障碍和微生物群改变方面,多综合方法可用于评估哨哨菌的功能适应。
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来源期刊
Aquatic Toxicology
Aquatic Toxicology 环境科学-毒理学
CiteScore
7.10
自引率
4.40%
发文量
250
审稿时长
56 days
期刊介绍: Aquatic Toxicology publishes significant contributions that increase the understanding of the impact of harmful substances (including natural and synthetic chemicals) on aquatic organisms and ecosystems. Aquatic Toxicology considers both laboratory and field studies with a focus on marine/ freshwater environments. We strive to attract high quality original scientific papers, critical reviews and expert opinion papers in the following areas: Effects of harmful substances on molecular, cellular, sub-organismal, organismal, population, community, and ecosystem level; Toxic Mechanisms; Genetic disturbances, transgenerational effects, behavioral and adaptive responses; Impacts of harmful substances on structure, function of and services provided by aquatic ecosystems; Mixture toxicity assessment; Statistical approaches to predict exposure to and hazards of contaminants The journal also considers manuscripts in other areas, such as the development of innovative concepts, approaches, and methodologies, which promote the wider application of toxicological datasets to the protection of aquatic environments and inform ecological risk assessments and decision making by relevant authorities.
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