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Cumulative effects of municipal effluent and parasite infection in yellow perch: A field study using high-throughput RNA-sequencing

机译:黄鲈鱼城市污水和寄生虫感染的累积效应:使用高通量RNA测序的田间研究

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摘要

Multiple metabolic, immune and reproductive effects have been reported in fish residing in effluent-impacted sites. Natural stressors such as parasites also have been shown to impact the responses of organisms to chronic exposure to municipal effluent in the St. Lawrence River (Quebec, Canada). In order to comprehensively evaluate the cumulative impacts of anthropogenic and natural stressors on the health of yellow perch, differential mRNA transcription profiles were examined in juvenile females collected from effluent-impacted and upstream sites with low or high infection levels of the larval trematode Apophallus brevis. Transcriptomics was used to identify biological pathways associated with environmental exposure. In total, 3463 isoforms were differentially transcribed between sites. Patterns reflecting the combined effects of stressors were numerically dominant, with a majority of downregulated transcripts (68%). The differentially expressed transcripts were associated with 27 molecular and cellular functions ranging from cellular development to xenobiotic metabolism and were involved in the development and function of 13 organ systems including hematological, hepatic, nervous, reproductive and endocrine systems. Based on RNA-seq results, sixteen genes were measured by qPCR. Significant differences were observed for six genes in fish exposed to both stressors combined, whereas parasites and effluent individually impacted the transcription of one gene. Lysozyme activity, lipid peroxidation, retinol-binding protein and glucose-6-phosphate dehydrogenase were selected as potential biomarkers of effects to study specific pathways of interest. Lipid peroxidation in perch liver was different between sites, parasite loads, and for combined stressors. Overall, results indicated that juvenile yellow perch responded strongly to combined parasite and effluent exposure, suggesting cumulative effects on immune responses, inflammation and lipid metabolism mediated by retinoid receptors. The present study highlight the importance of using a comprehensive approach combining transcriptomics and endpoints measured at higher levels of biological organization to better understand cumulative risks of contaminants and pathogens in aquatic ecosystems. Crown Copyright (c) 2019 Published by Elsevier B.V. All rights reserved.
机译:在栖息在污水影响位点的鱼类中报告了多种代谢,免疫和生殖效果。寄生虫等天然压力源也被证明会影响有机体对慢性暴露于圣劳伦斯河(加拿大魁北克)的慢性暴露的慢性暴露。为了综合评价人为和自然压力源对黄色鲈鱼的健康的累积影响,在从流出物抗冲击和上游部位收集的幼年中检查差分mRNA转录曲线,低或高感染水平的幼虫震颤患者Bevis。转录组织用于鉴定与环境暴露相关的生物途径。总共有3463种同种型在位点之间差异转录。反映压力源的组合效果的图案在数量上显着,大多数下调的转录物(68%)。差异表达的转录物与来自细胞发育的27个分子和细胞函数相关联,并且参与了13个器官系统的发育和功能,包括血液学,肝脏,神经,生殖和内分泌系统。基于RNA-SEQ结果,通过QPCR测量十六个基因。在暴露于两种压力源的鱼中,观察到六个基因的显着差异,而寄生虫和流出物单独影响一种基因的转录。选择溶菌酶活性,脂质过氧化,视黄醇结合蛋白和葡萄糖-6-磷酸脱氢酶作为研究感兴趣的特异性途径的潜在生物标志物。在鲈鱼肝脏中的脂质过氧化在位点,寄生虫载荷和组合压力源之间是不同的。总体而言,结果表明,幼年黄鲈鱼强烈反应寄生虫和污水暴露,表明类视网膜受体介导的免疫应答,炎症和脂质代谢的累积影响。本研究突出了使用在更高水平的生物学组织中测量的转录组织和终点组合的综合方法的重要性,以更好地了解水生生态系统中的污染物和病原体的累积风险。皇家版权(c)2019由elestvier b.v出版。保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第may15期|797-809|共13页
  • 作者单位

    Environm & Climate Change Canada Aquat Contaminants Res Div Water Sci & Technol Directorate 105 McGill St Montreal PQ H2E 2E7 Canada;

    Environm & Climate Change Canada Aquat Contaminants Res Div Water Sci & Technol Directorate 105 McGill St Montreal PQ H2E 2E7 Canada;

    Environm & Climate Change Canada Aquat Contaminants Res Div Water Sci & Technol Directorate 867 Lakeshore Rd Burlington ON L7S 1A1 Canada;

    Environm & Climate Change Canada Aquat Contaminants Res Div Water Sci & Technol Directorate 105 McGill St Montreal PQ H2E 2E7 Canada;

    Environm & Climate Change Canada Aquat Contaminants Res Div Water Sci & Technol Directorate 867 Lakeshore Rd Burlington ON L7S 1A1 Canada;

    Environm & Climate Change Canada Aquat Contaminants Res Div Water Sci & Technol Directorate 105 McGill St Montreal PQ H2E 2E7 Canada;

    Environm & Climate Change Canada Aquat Contaminants Res Div Water Sci & Technol Directorate 105 McGill St Montreal PQ H2E 2E7 Canada;

    Environm & Climate Change Canada Aquat Contaminants Res Div Water Sci & Technol Directorate 105 McGill St Montreal PQ H2E 2E7 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wastewater effluents; Parasites; Perca flavescens; RNA-sequencing; Freshwater ecosystem; Ecotoxicogenomics;

    机译:废水流出物;寄生虫;perca flavescens;RNA测序;淡水生态系统;生态毒素;

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