首页> 外文期刊>Environmental toxicology and chemistry >MULTIPLE STRESSOR EFFECTS OF METHOPRENE, PERMETHRIN, AND SALINITY ON LIMB REGENERATION AND MOLTING IN THE MUD FIDDLER CRAB (UCA PUGNAX)
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MULTIPLE STRESSOR EFFECTS OF METHOPRENE, PERMETHRIN, AND SALINITY ON LIMB REGENERATION AND MOLTING IN THE MUD FIDDLER CRAB (UCA PUGNAX)

机译:异丙基苯,氯菊酯和盐度对泥浆蟹(UCA PUGNAX)肢体再生和融化的多重应激作用

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摘要

Exposure to multiple stressors from natural and anthropogenic sources poses risk to sensitive crustacean growth and developmental processes. Applications of synthetic pyrethroids and insect growth regulators near shallow coastal waters may result in harmful mixture effects depending on the salinity regime. The potential for nonadditive effects of a permethrin (0.01-2 μg/L), methoprene (0.03-10 μg/L ), and salinity (10-40 ppt) exposure on male and female Uca pugnax limb regeneration and molting processes was evaluated by employing a central composite rotatable design with multifactorial regression. Crabs underwent single-limb autotomy followed by a molting challenge under 1 of 16 different mixture treatments. During the exposure (21-66 d), individual limb growth, major molt stage duration, abnormal limb regeneration, and respiration were monitored. At 6 d postmolt, changes in body mass, carapace width, and body condition factor were evaluated. Dorsal carapace tissue was collected, and protein and chitin were extracted to determine the composition of newly synthesized exoskeleton. The present results suggest chronic, low-dose exposures to multiple pesticide stressors cause less-than-additive effects on U. pugnax growth processes. Under increasing concentrations of methoprene and permethrin, males had more protein in their exoskeletons and less gain in body mass, carapace width, and body condition compared to females. Females exhibited less gain in carapace width than controls in response to methoprene and permethrin. Females also displayed elevated respiration rates at all stages of molt, suggesting a high metabolic rate. Divergent growth and fitness between the sexes over the long term could influence crustacean population resilience.
机译:从自然和人为来源暴露于多种应激源会威胁敏感的甲壳类动物的生长和发育过程。根据盐度制度,在沿海浅水区附近使用合成拟除虫菊酯和昆虫生长调节剂可能会产生有害的混合效应。通过以下方法评估了氯菊酯(0.01-2μg/ L),甲基戊二烯(0.03-10μg/ L)和盐度(10-40 ppt)对雄性和雌性Uca pugnax肢体再生和蜕皮过程的非累加作用潜力采用具有多因素回归的中央复合可旋转设计。在16种不同的混合物处理方法之一中,对螃蟹进行单肢切开手术,然后进行蜕皮挑战。在暴露期间(21-66 d),监测个体肢体生长,主要蜕皮期持续时间,异常肢体再生和呼吸。蜕皮后6 d,评估体重,甲壳宽度和身体状况因素的变化。收集背甲组织,提取蛋白质和几丁质以确定新合成的外骨骼的组成。目前的结果表明,长期,低剂量地暴露于多种农药胁迫对U. pugnax的生长过程产生的影响小于累加作用。与雌性相比,在甲基丁二烯和苄氯菊酯浓度增加的情况下,雄性外骨骼中的蛋白质更多,而体重,甲壳宽度和身体状况的增加则较少。在对甲氧戊二烯和苄氯菊酯的响应中,雌性显示出的甲壳宽度增加幅度小于对照组。雌性在蜕皮的所有阶段还显示出较高的呼吸速率,表明新陈代谢速率较高。长期来看,两性之间的增长和适应能力不同可能会影响甲壳类种群的适应力。

著录项

  • 来源
    《Environmental toxicology and chemistry》 |2009年第11期|2348-2359|共12页
  • 作者单位

    Biology Department, West Virginia University, Morgantown, West Virginia 26506, USA Department of Biological and Environmental Sciences, California University of Pennsylvania, California, Pennsylvania 15419, USA;

    Department of Infectious Diseases, University of Georgia, Athens, Georgia 30602, USA;

    Biology Department, West Virginia University, Morgantown, West Virginia 26506, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);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

    mixture toxicity; endocrine disruption; pyrethroids; crustacean; fractionated design;

    机译:混合物毒性;内分泌干​​扰拟除虫菊酯;甲壳类分式设计;

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