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Multiple biomarker approach in the fiddler crab to assess anthropogenic pollution in tropical coastal environments

机译:招潮蟹中的多种生物标记方法评估热带沿海环境中的人为污染

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摘要

Context: Fiddler crabs are important to the ecology of estuarine systems around the world, however, few studies have incorporated them as bioindicators. Urias estuary represents one of the most urbanized lagoons in the Gulf of California region and received discharges from different sources: shrimp farm, thermoelectric plant, fish processing plants, and untreated domestic and sewage wastes. Objective: Assess the effects on anthropogenic contamination on female fiddler crabs reproduction, survival and genetic stability. Methods: Exposition of wild crabs from a less impacted (reference) site to naturally contaminated sediments on under controlled laboratory conditions. Reproductive parameters, levels of DNA damage and mortality rates were measured, together with chemical analyses of sediments. Results: The most contaminated sediments corresponded to the site where fish processing plants were located and the integrated biomarker response analysis revealed that the most adverse effects were produced by exposure to sediments from this site; these crabs showed higher mortality (67%) and poorer ovarian development than those crabs exposed to sediments from other sites. Conclusions: Female crabs under pollution stress are able to trade-off reproduction for survival, and surviving animals were able to restore genetic stability possibly by activating DNA repair mechanisms. Multiple biomarker approach discriminates different coastal contamination scenarios.
机译:背景:提琴蟹对全球河口系统的生态至关重要,但是,很少有研究将其纳入生物指标。乌里亚斯河口代表加利福尼亚湾地区城市化程度最高的泻湖之一,并受到来自不同来源的排放:虾场,热电厂,鱼品加工厂以及未经处理的生活垃圾和污水。目的:评估人为污染对雌提琴蟹的繁殖,存活和遗传稳定性的影响。方法:在受控制的实验室条件下,将野生蟹从受影响较小(参考)的地点暴露于自然污染的沉积物。测量生殖参数,DNA损伤水平和死亡率,以及沉积物的化学分析。结果:受污染最严重的沉积物对应于鱼类加工厂所在的地点,综合生物标记反应分析表明,暴露于该地点的沉积物产生的不利影响最大。与暴露于其他地点沉积物的那些螃蟹相比,这些螃蟹显示出更高的死亡率(67%)和较差的卵巢发育。结论:处于污染压力下的雌性蟹能够权衡繁殖以求生存,而存活的动物可能能够通过激活DNA修复机制来恢复遗传稳定性。多种生物标志物方法可区分不同的沿海污染情况。

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  • 来源
    《Biomarkers 》 |2019年第8期| 141-152| 共12页
  • 作者

  • 作者单位

    Ctr Invest Alimentaci & Desarrollo AC Ave Sabalo Cerritos S-N Mazatlan 82100 Sinaloa Mexico;

    Inst Politecn Nacl Ctr Reg Prod Mas Limpia Cunduacan Mexico;

    Ctr Invest Alimentaci & Desarrollo AC Carretera Victoria Km 0-6 Hermosillo Sonora Mexico;

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

    Coastal zone; genotoxicity; sediment pollution; sewage; reproductive condition; Uca princeps;

    机译:沿海地区;遗传毒性沉积物污染污水生殖状况乌卡王子;

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