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Seed clam growth: an alternative sediment bioassay developed during emap in the carolinian province

机译:种蛤的生长:在emap过程中开发的另一种沉积物生物测定法

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A new sediment bioassay was developed in conjunction with EMAP studies conducted in the Carolinian Province using juvenile seed clams, Mercenaria mercenaria. This is a sublethal assay, based on growth (total dry weight) after a 7 day incubation period. Seed clam chronic growth assays were significantly more sensitive than amphipod acute toxicity assays. Optimization components include use of hatchery-reared juvenile clams in a rapid growth phase, and size-sieving to ensure a similar size range. Juvenile clam growth was not affected by sediment type, i.e., clams grew well in muddy and sandy sediments. Clams were slightly more sensitive to ammonia than amphipods (NOEC porewater total ammonia 14 - 16 mg/L for clams). Ammonia concentrations above these leves were more common in reference sites, so most of the false positives could be explained by ammonia toxicity. This assay possesses a number of other positive attributes that are desirable for a bioassay, including the requirement for a relatively small sample size (500 ml of sediments), balanced sensitivity, low incremental costs, and high information gained. The seed clam assy is believed to be a valuable tool for EMAP as well as other monitoring efforts for estimating potential chronic toxicity.
机译:结合EMAP研究,开发了一种新的沉积物生物测定方法,该方法在卡罗莱纳州使用了少年蛤c Mercenaria mercenaria。这是一个亚致死分析,基于7天温育期后的生长(总干重)。蛤类慢性生长测定比两栖动物急性毒性测定要敏感得多。优化组件包括在快速生长阶段使用孵化场饲养的幼蛤,并进行筛分以确保相似的大小范围。幼蛤的生长不受沉积物类型的影响,即蛤在泥泞和沙质的沉积物中生长良好。蛤类比两栖类动物对氨的敏感性稍高(蛤类动物的NOEC孔隙水总氨含量为14-16 mg / L)。高于这些水平的氨浓度在参考部位更为常见,因此大多数误报可由氨毒性来解释。该测定具有生物测定所需的许多其他积极属性,包括需要相对较小的样本大小(500 ml沉积物),平衡的灵敏度,较低的增量成本和获得的高信息。蛤c总成被认为是EMAP以及其他监测工作的有价值的工具,以估计潜在的慢性毒性。

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