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首页> 外文期刊>Ecotoxicology and Environmental Safety >Isopods of the genus Ligia as potential biomonitors of trace metals from the gulf of California and pacific coast of the Baja California peninsula
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Isopods of the genus Ligia as potential biomonitors of trace metals from the gulf of California and pacific coast of the Baja California peninsula

机译:Ligia的等足生物可能是来自加利福尼亚湾和下加利福尼亚半岛太平洋海岸的微量金属的潜在生物监测器

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摘要

Supralittoral and high intertidal coastal zones are exposed to pollution from both marine and terrestrial sources and undergo higher deposition rates than the subtidal zone. It is therefore important to identify organisms for this section of the coastal area that can be tolerant to contaminants. The aim of this study was to determine if supralittoral isopods of the genus Ligia can be used as biomonitors, since they are abundant and widely distributed. For this purpose, concentrations of trace elements were determined in Ligia isopods in toto from 26 locations across the Gulf of California and Pacific coast of the Baja California peninsula, which were collected during the summers of 2009 and 2010. The concentrations of trace elements followed the order of; Zn ≥ Cu > As > Cd > Pb > Hg. Elevated concentrations of copper (up to 1010 μg/g) were detected in Ligia from Santa Rosalia (SRo), a locality where industrial mining of copper has historically occurred. Industrial and municipal sewage discharges appear to have contributed to the high concentrations of zinc (326 μg/g) and lead (144 μg/g) found in organisms from Guaymas location. The high mercury concentration in organisms from Mazatlan (M) (2.01 μg/g) was associated with a thermoelectric plant. Natural sources of metals were also detected; coastal upwelling appears to be associated with high cadmium concentrations in Ligia from Punta Baja (PB) (256 μg/g) in the Pacific coast, whereas hydrothermal vents may have contributed to high concentrations of arsenic at Ensenada (E) (61 μg/g). Our results suggest that Ligia isopods reflect the natural and anthropogenic inputs of trace metals in the environment and could potentially be used as biomonitor organisms of the intertidal rocky shores of the Gulf of California and Pacific coast.
机译:沿海上和潮间带沿海地区都受到海洋和陆地来源的污染,其沉积速率高于潮下带。因此,重要的是在沿海地区的这一部分确定可以耐受污染物的生物。这项研究的目的是确定Ligia的腹膜上等足动物是否可以用作生物监测器,因为它们种类丰富且分布广泛。为此,在2009年和2010年夏季收集了横跨加利福尼亚湾和下加利福尼亚半岛太平洋海岸的26个地点的利吉亚等足动物中的痕量元素浓度。顺序Zn≥Cu> As> Cd> Pb> Hg。在圣罗莎莉亚(SRo)的利吉亚(Ligia),历史悠久的铜工业开采所在地,检测到高浓度的铜(最高1010μg/ g)。工业和市政污水的排放似乎促成了在Guaymas地区生物中发现的高浓度锌(326μg/ g)和铅(144μg/ g)。来自马萨特兰(M)的生物中的高汞浓度(2.01μg/ g)与热电厂有关。还发现了天然金属来源;沿海上升流似乎与太平洋沿岸蓬塔巴哈(PB)的利吉亚的高镉浓度(256μg/ g)有关,而热液喷口可能导致恩塞纳达(E)的高砷浓度(61μg/ g) )。我们的结果表明,Ligia等足动物反映了环境中痕量金属的自然和人为输入,并且有可能被用作加利福尼亚湾和太平洋沿岸潮间带岩石海岸的生物监测生物。

著录项

  • 来源
    《Ecotoxicology and Environmental Safety》 |2015年第2期|177-185|共9页
  • 作者单位

    Centro de Investigacion en Alimentacion y Desarrollo A.C. (CIAD)-Guaymas Unit, Carretera al Varadero Nal. Km 6.6 Guaymas, Sonora , Mexico;

    Department of Wildlife and Fisheries, Texas A&M University, Old Heep Building 110E, TAMU College Station, TX 77843-2258, USA;

    Centro de Investigacion en Alimentacion y Desarrollo A.C. (CIAD)-Guaymas Unit, Carretera al Varadero Nal. Km 6.6 Guaymas, Sonora , Mexico;

    Centro de Investigacion en Alimentacion y Desarrollo A.C. (CIAD)-Guaymas Unit, Carretera al Varadero Nal. Km 6.6 Guaymas, Sonora , Mexico;

    Centro de Investigacion en Alimentacion y Desarrollo A.C. (CIAD)-Guaymas Unit, Carretera al Varadero Nal. Km 6.6 Guaymas, Sonora , Mexico;

    Department of Biological, Geological and Environmental Sciences, University of Catania Via Androne n. 81, 95124 Catania, Italy;

    Department of Anatomy, Biology and Genetics, Legal Medicine, Neuroscience, Diagnostic Pathology, Hygiene and Public Health 'G. F. Ingrassia', University of Catania Via S. Sofia n. 87, 95123 Catania, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ligia; Intertidal organisms; Trace metals; Anthropogenic impact; Mining;

    机译:利贾;潮间带生物痕量金属;人为影响;矿业;

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