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桡足类动物虎斑猛水蚤:一种用于生态毒理学和环境基因组学的有前景的海洋模式生物。

The copepod Tigriopus: a promising marine model organism for ecotoxicology and environmental genomics.

作者信息

Raisuddin Sheikh, Kwok Kevin W H, Leung Kenneth M Y, Schlenk Daniel, Lee Jae-Seong

机构信息

Department of Chemistry and the National Research Lab of Marine Molecular and Environmental Bioscience, College of Natural Sciences, Hanyang University, Seoul 133-791, South Korea.

出版信息

Aquat Toxicol. 2007 Jul 20;83(3):161-73. doi: 10.1016/j.aquatox.2007.04.005. Epub 2007 May 4.

Abstract

There is an increasing body of evidence to support the significant role of invertebrates in assessing impacts of environmental contaminants on marine ecosystems. Therefore, in recent years massive efforts have been directed to identify viable and ecologically relevant invertebrate toxicity testing models. Tigriopus, a harpacticoid copepod has a number of promising characteristics which make it a candidate worth consideration in such efforts. Tigriopus and other copepods are widely distributed and ecologically important organisms. Their position in marine food chains is very prominent, especially with regard to the transfer of energy. Copepods also play an important role in the transportation of aquatic pollutants across the food chains. In recent years there has been a phenomenal increase in the knowledge base of Tigriopus spp., particularly in the areas of their ecology, geophylogeny, genomics and their behavioural, biochemical and molecular responses following exposure to environmental stressors and chemicals. Sequences of a number of important marker genes have been studied in various Tigriopus spp., notably T. californicus and T. japonicus. These genes belong to normal biophysiological functions (e.g. electron transport system enzymes) as well as stress and toxic chemical exposure responses (heat shock protein 20, glutathione reductase, glutathione S-transferase). Recently, 40,740 expressed sequenced tags (ESTs) from T. japonicus, have been sequenced and of them, 5,673 ESTs showed significant hits (E-value, >1.0E-05) to the red flour beetle Tribolium genome database. Metals and organic pollutants such as antifouling agents, pesticides, polycyclic aromatic hydrocarbons (PAH) and polychrlorinated biphenyls (PCB) have shown reproducible biological responses when tested in Tigriopus spp. Promising results have been obtained when Tigriopus was used for assessment of risk associated with exposure to endocrine-disrupting chemicals (EDCs). Application of environmental gene expression techniques has allowed evaluation of transcriptional changes in T. japonicus with the ultimate aim of understanding the mechanisms of action of environmental stressors. Through a better understanding of toxicological mechanisms, ecotoxicologists may use this ecologically relevant species in risk assessment studies in marine systems. The combination of uses as a whole-animal bioassay and gene expression studies indicate that Tigriopus may serve as an excellent tool to evaluate the impacts of marine pollution throughout the coastal region. The purpose of this review is to illustrate the potential of using Tigriopus to fulfill the niche as an important invertebrate marine model organism for ecotoxicology and environmental genomics. In addition, the knowledge gaps and areas for further studies have also been discussed.

摘要

越来越多的证据支持无脊椎动物在评估环境污染物对海洋生态系统影响方面的重要作用。因此,近年来人们付出了巨大努力来确定可行的、与生态相关的无脊椎动物毒性测试模型。猛水蚤属的一种猛水蚤Tigriopus具有许多有前景的特征,使其成为此类研究中值得考虑的候选对象。Tigriopus和其他桡足类是分布广泛且具有重要生态意义的生物。它们在海洋食物链中的地位非常突出,尤其是在能量传递方面。桡足类在水生污染物跨食物链的传输中也起着重要作用。近年来,关于Tigriopus属的知识基础有了显著增加,特别是在其生态学、系统发育学、基因组学以及暴露于环境应激源和化学物质后的行为、生化和分子反应等方面。在各种Tigriopus属物种中,特别是加利福尼亚猛水蚤(T. californicus)和日本猛水蚤(T. japonicus),已经研究了许多重要标记基因的序列。这些基因属于正常的生物生理功能(如电子传递系统酶)以及应激和有毒化学物质暴露反应(热休克蛋白20、谷胱甘肽还原酶、谷胱甘肽S -转移酶)。最近,对日本猛水蚤的40,740个表达序列标签(ESTs)进行了测序,其中5,673个ESTs与赤拟谷盗Tribolium的基因组数据库有显著匹配(E值,>1.0E - 05)。金属和有机污染物,如防污剂、农药、多环芳烃(PAH)和多氯联苯(PCB),在Tigriopus属物种中进行测试时显示出可重复的生物学反应。当使用Tigriopus评估与接触内分泌干扰化学物质(EDC)相关的风险时,已经取得了有希望的结果。环境基因表达技术的应用使得能够评估日本猛水蚤的转录变化,最终目的是了解环境应激源的作用机制。通过更好地理解毒理学机制,生态毒理学家可以在海洋系统的风险评估研究中使用这种与生态相关的物种。作为全动物生物测定和基因表达研究的结合表明,Tigriopus可以作为评估整个沿海地区海洋污染影响的优秀工具。本综述的目的是说明使用Tigriopus作为生态毒理学和环境基因组学中重要的无脊椎动物海洋模式生物来填补这一空白的潜力。此外,还讨论了知识空白和进一步研究的领域。

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