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首页> 外文期刊>Aquatic Toxicology >Sodium sulfate impacts feeding, specific dynamic action, and growth rate in the freshwater bivalve Corbicula fluminea
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Sodium sulfate impacts feeding, specific dynamic action, and growth rate in the freshwater bivalve Corbicula fluminea

机译:硫酸钠会影响淡水双壳贝类Corbicula fluminea的摄食,特定的动力作用和生长速率

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Sodium sulfate is a ubiquitous salt that reaches toxic concentrations due to mining and other industrial activities, yet is currently unregulated at the Federal level in the United States. Previous studies have documented reduced growth of clams downstream of sulfate-dominated effluents, altered bioenergetics in filter-feeding invertebrates, and interactions between sulfate and other toxicants. Therefore, the purpose of this study was to determine if sodium sulfate affects the bioenergetics of the filter-feeding, freshwater bivalve, Corbicula fluminea, and the mechanism by which the effects are elicited. In addition to measuring effects on feeding, respiration and growth rates, I evaluated the relative sensitivity of a green algae consumed by clams to determine if top-down or bottom-up effects might be exhibited under field conditions. This study demonstrated that sodium sulfate had no effect on basal metabolic rates, but significantly reduced the feeding, post-feeding metabolic, and growth rates of C. fluminea. The proposed mechanism for these impacts is that filtering rates are reduced upon exposure, resulting in reduced food consumption and therefore, preventing increased metabolic rates normally associated with post-feeding specific dynamic action (SDA). In the field, these effects may cause changes in whole stream respiration rates and organic matter dynamics, as well as alter uptake rates of other food-associated contaminants like selenium, the toxicity of which is known to be antagonized by sulfate, in filter-feeding bivalves.
机译:硫酸钠是一种普遍存在的盐,由于采矿和其他工业活动而达到有毒的浓度,但目前在美国联邦一级尚未受到监管。先前的研究已证明,以硫酸盐为主的废水下游蛤类的生长减少,滤食性无脊椎动物中生物能的变化以及硫酸盐与其他有毒物质之间的相互作用。因此,本研究的目的是确定硫酸钠是否会影响滤食,淡水双壳类,Cor形珊瑚(Corbicula fluminea)的生物能,以及引起这种作用的机理。除了测量对进食,呼吸和生长速率的影响外,我还评估了蛤consumed所消耗的绿藻的相对敏感性,以确定在田间条件下是否会表现出自上而下或自下而上的作用。这项研究表明,硫酸钠对基础代谢率没有影响,但显着降低了饲喂C. fluminea的摄食,摄食后代谢和生长速度。提出这些影响的机制是,降低暴露时的过滤率,从而减少食物消耗,因此可以防止通常与喂食后特定动态作用(SDA)相关的代谢率增加。在现场,这些影响可能会导致全流呼吸速率和有机物动态变化,以及其他食物相关污染物(例如硒)的吸收率发生变化,硒的毒性在过滤器饲喂中会被硫酸盐拮抗双壳类动物。

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