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小型剑水蚤类桡足动物纳氏伪镖水蚤作为生态毒性测试无脊椎动物模型的潜力。

Potential of the small cyclopoid copepod Paracyclopina nana as an invertebrate model for ecotoxicity testing.

作者信息

Dahms Hans-Uwe, Won Eun-Ji, Kim Hui-Su, Han Jeonghoon, Park Heum Gi, Souissi Sami, Raisuddin Sheikh, Lee Jae-Seong

机构信息

Department of Biomedical Science and Environmental Biology, Kaohsiung Medical University, Kaohsiung 80708, Taiwan; Department of Marine Biotechnology and Resources, National Sun Yat-sen University, Kaohsiung 80424, Taiwan.

Department of Biological Science, College of Science, Sungkyunkwan University, Suwon 16419, South Korea.

出版信息

Aquat Toxicol. 2016 Nov;180:282-294. doi: 10.1016/j.aquatox.2016.10.013. Epub 2016 Oct 14.

Abstract

Aquatic invertebrates contribute significantly to environmental impact assessment of contaminants in aquatic ecosystems. Much effort has been made to identify viable and ecologically relevant invertebrate test organisms to meet rigorous regulatory requirements. Copepods, which are ecologically important and widely distributed in aquatic organisms, offer a huge opportunity as test organisms for aquatic toxicity testing. They have a major role not only in the transfer of energy in aquatic food chains, but also as a medium of transfer of aquatic pollutants across the tropic levels. In this regard, a supratidal and benthic harpacticoid copepod Tigriopus japonicus Mori (order Harpacticoida) has shown promising characteristics as a test organism in the field of ecotoxicology. Because there is a need to standardize a battery of test organisms from species in different phylogenetic and critical ecosystem positions, it is important to identify another unrelated planktonic species for wider application and comparison. In this regard, the cyclopoid copepod Paracyclopina nana Smirnov (order Cyclopoida) has emerged as a potential test organism to meet such requirements. Like T. japonicus, it has a number of features that make it a candidate worth consideration in such efforts. Recently, the genomics of P. nana has been unraveled. Data on biochemical and molecular responses of P. nana against exposure to environmental chemicals and other stressors have been collected. Recently, sequences and expression profiles of a number of genes in P. nana encoding for heat shock proteins, xenobiotic-metabolizing enzymes, and antioxidants have been reported. These genes serve as potential biomarkers in biomonitoring of environmental pollutants. Moreover, the application of gene expression techniques and the use of its whole transcriptome have allowed evaluation of transcriptional changes in P. nana with the ultimate aim of understanding the mechanisms of action of environmental stressors. Whole-animal bioassays and gene expression studies indicate that P. nana may serve as an excellent tool to evaluate the impact of diverse disturbances in the marine environment. With a better understanding of toxicological mechanisms, ecotoxicologists will be able to understand defense mechanisms against toxicants in copepods. In this review, we illustrate the potential of P. nana as an alternative as well as a complementary invertebrate model organism for risk assessment of aquatic pollutants.

摘要

水生无脊椎动物对水生生态系统污染物的环境影响评估具有重要意义。为了满足严格的监管要求,人们付出了很多努力来确定可行且与生态相关的无脊椎动物测试生物。桡足类动物在生态上具有重要意义,广泛分布于水生生物中,为水生毒性测试提供了巨大的机会。它们不仅在水生食物链的能量传递中发挥着重要作用,还作为水生污染物在营养级之间传递的媒介。在这方面,一种潮间带和底栖的猛水蚤类桡足动物日本虎斑猛水蚤(猛水蚤目)在生态毒理学领域已显示出作为测试生物的良好特性。由于需要对来自不同系统发育和关键生态系统位置的物种的一系列测试生物进行标准化,因此确定另一种不相关的浮游物种以进行更广泛的应用和比较非常重要。在这方面,圆水蚤类桡足动物纳氏伪镖水蚤(剑水蚤目)已成为满足此类要求的潜在测试生物。与日本虎斑猛水蚤一样,它具有许多使其成为此类研究中值得考虑的候选生物的特征。最近,纳氏伪镖水蚤的基因组学已被解析。已收集了纳氏伪镖水蚤暴露于环境化学物质和其他应激源后的生化和分子反应数据。最近,已报道了纳氏伪镖水蚤中一些编码热休克蛋白、异源生物代谢酶和抗氧化剂的基因的序列和表达谱。这些基因可作为环境污染物生物监测中的潜在生物标志物。此外,基因表达技术的应用及其全转录组的使用使得能够评估纳氏伪镖水蚤的转录变化,最终目的是了解环境应激源的作用机制。全动物生物测定和基因表达研究表明,纳氏伪镖水蚤可能是评估海洋环境中各种干扰影响的优秀工具。随着对毒理学机制的更好理解,生态毒理学家将能够了解桡足类动物对毒物的防御机制。在本综述中,我们阐述了纳氏伪镖水蚤作为水生污染物风险评估的替代和补充无脊椎动物模型生物的潜力。

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