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Developmental exposure to environmentally relevant concentrations of bifenthrin alters transcription of mTOR and ryanodine receptor-dependent signaling molecules and impairs predator avoidance behavior across early life stages in inland silversides (Menidia beryllina)

机译:发育暴露于环境相关浓度的联苯菊酯会改变内陆银杏苷(menidia beryllina)生命早期各个阶段中mTOR和依赖于ryanodine受体的信号分子的转录并损害捕食者回避行为。

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摘要

Altered transcription of calcium-dependent signaling cascades involving the ryanodine receptor (RyR) and mechanistic target of rapamycin (mTOR) in response to environmental exposures have been described in model vertebrates, including zebrafish, while the relevance for wild fishes remains unknown. To address this knowledge gap, we exposed the euryhaline model species Menidia beryllina (inland silversides) to the insecticide bifenthrin, a known modulator of calcium signaling. The main objectives of this study were to determine: (1) whether exposure of developing silversides to environmentally relevant concentrations of bifenthrin alters their behavior; and (2) whether behavioral changes correlate with altered expression of genes involved in RyR and mTOR-dependent signaling pathways. At six hours post fertilization (hpf), inland silversides were exposed to bifenthrin at 3, 27 and 122 ng/L until 7 days post fertilization (dpf, larvae hatched at 6dpf), followed by a 14-day recovery period in uncontaminated water. Transcriptional responses were measured at 5, 7 and 21 dpf; locomotor behavior following external stimuli and response to an olfactory predator cue were assessed at 7 and 21 dpf. Bifenthrin elicited significant non-monotonic transcriptional responses in the majority of genes examined at 5 dpf and at 21 dpf. Bifenthrin also significantly altered predator avoidance behavior via olfactory mechanisms with main effects identified for animals exposed to 3 and 27 ng/L. Behavioral effects were not detected in response to visual stimuli during acute exposure, but were significant in the predator-cue assessment following the recovery period, suggesting delayed and long-term effects of early developmental exposures to bifenthrin. Our findings demonstrate that at picomolar (pM) concentrations, which are often not represented in ecotoxicological studies, bifenthrin perturbs early development of inland silversides. These developmental impacts are manifested behaviorally at later life stages, specifically as altered patterns of predator avoidance behavior, which have been correlated with population decline. Collectively, these data suggest that bifenthrin may be negatively impacting wild fish populations.
机译:已经在包括斑马鱼在内的模型脊椎动物中描述了响应于环境暴露而改变的依赖于雷诺霉素受体(RyR)和雷帕霉素机制靶点(mTOR)的钙依赖性信号传导级联的转录,而与野生鱼类的相关性仍然未知。为了解决这一知识鸿沟,我们将euryhaline模型物种Menidia beryllina(内陆银苷)暴露于杀虫剂联苯菊酯(bifenthrin)(一种已知的钙信号传导调节剂)下。这项研究的主要目的是确定:(1)将发展中的银苷暴露于与环境有关的联苯菊酯浓度是否会改变其行为; (2)行为变化是否与参与RyR和mTOR依赖性信号通路的基因表达改变相关。施肥后六小时(hpf),内陆银杏苷分别以3、27和122 ng / L的浓度与联苯菊酯接触,直到施肥后7天(dpf,幼虫孵化速度为6dpf),然后在未污染的水中恢复14天。在5、7和21 dpf处测量转录反应;在7和21 dpf时评估了外部刺激后的运动行为和对嗅觉掠食者线索的反应。在5 dpf和21 dpf检测的大多数基因中,联苯菊酯引发了显着的非单调转录反应。联苯菊酯还通过嗅觉机制显着改变了捕食者回避行为,对暴露于3和27 ng / L的动物具有主要作用。在急性暴露期间未检测到对视觉刺激有反应的行为影响,但在恢复期后的捕食者提示评估中有明显的行为影响,表明早期发育暴露于联苯菊酯的延迟和长期影响。我们的发现表明,在生态毒理学研究中通常没有表现出的皮摩尔浓度(pM)下,联苯菊酯干扰了内陆银杏苷的早期发育。这些发展影响在以后的生活阶段就表现出来,特别是作为与人口减少相关的捕食者回避行为方式的改变。总体而言,这些数据表明联苯菊酯可能会对野生鱼类种群产生负面影响。

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