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Uranium Bioaccumulation Dynamics in the Mayfly Neocloeon triangulifer and Application to Site-Specific Prediction

机译:铀生物累积动态在Maysfly Neocloeon Triangulifer和应用于现场特定的预测

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摘要

Little is known about the underlying mechanisms governing the bioaccumulation of uranium (U) in aquatic insects. We experimentally parameterized conditional rate constants for aqueous U uptake, dietary U uptake, and U elimination for the aquatic baetid mayfly Neocloeon triangulifer. Results showed that this species accumulates U from both the surrounding water and diet, with waterborne uptake prevailing. Elevated dietary U concentrations decreased feeding rates, presumably by altering food palatability or impairing the mayfly's digestive processes, or both. Nearly 90% of the accumulated U was eliminated within 24 h after the waterborne exposure ceased, reflecting the desorption of weakly bound U from the insect's integument. To examine whether the experimentally derived rate constants for N. triangulifer could be generalized to baetid mayflies, mayfly U concentrations were predicted using the water chemistry and U measured in periphyton from springs in Grand Canyon (United States) and were compared to U concentrations in spring-dwelling mayflies. Predicted and observed mayfly U concentrations were in good agreement. Under the modeled site-specific conditions, waterborne U uptake accounted for 52-93% of the bioaccumulated U. U accumulation was limited in these wild populations due to a combination of factors including low concentrations of bioavailable dissolved U species, slow U uptake rates from food, and fast U elimination.
机译:关于治疗水生昆虫的铀(U)生物累积的潜在机制很少。我们对含水水溶液,膳食U吸收的调节条件化的条件率常数,以及对水生Baetid Mayfly Neocloeon Triancifer的消除。结果表明,该物种累积了乌周到水和饮食,水性摄取普遍存在。升高的膳食U浓度降低了饲养速率,可能通过改变食物适口性或损害Mayfly的消化过程,或两者。在水性暴露停止后24小时内消除了近90%的累积U,反映了昆虫的整数的弱束缚U的解吸。为了检查N.Triangulifer的实验衍生速率常数是否可以推广到Baetid Mayflies,使用水化学预测Mayshy U浓度,并且在大峡谷(美国)的普罗氏植物中测量的U测量,并与春季的浓度进行比较 - 露出梅花。预测和观察的May Fly U浓度非常一致。在模拟的位点特异性条件下,水性U摄取占生物累计U的52-93%。由于包括低浓度的生物可利用的溶解U物种,U次群体中的累积受到限制,从而缓慢u的吸收率食物,快速消除。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第18期|11313-11321|共9页
  • 作者单位

    Department of Biology University of South Dakota South Dakota 57069 United States;

    U.S. Geological Survey Menlo Park California 94025 United States;

    Columbia Environmental Research Center U.S. Geological Survey Columbia Missouri 65201 United States;

    Fort Collins Science Center U.S. Geological Survey Fort Collins Colorado 80526 United States;

    US Geological Survey Menlo Park California 94025 United States;

    U.S. Geological Survey Menlo Park California 94025 United States;

  • 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

  • 入库时间 2022-08-18 22:37:01

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