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首页> 外文期刊>Aquatic Toxicology >Exposure to cadmium causes inhibition of otolith development and behavioral impairment in zebrafish larvae
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Exposure to cadmium causes inhibition of otolith development and behavioral impairment in zebrafish larvae

机译:暴露于镉导致斑马鱼幼虫在右侧开发和行为损伤的抑制

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摘要

Otolith consisting largely of calcium carbonate, fibrous and proteins, is vital for maintaining body balance and/or hearing of fish. The formation of otolith involves Ca2+ transport and deposition. In the present study, we investigated the effects of Cd2+ on otoliths development by using zebrafish embryos as model. The results showed that exposure to Cd2+ inhibited the utricular and saccular otoliths growth, indicated by reduced lateral areas. Swimming speeds were reduced and a losing balance control was observed in Cd2+ exposed larvae. The genes related to Ca2+ transport (e.g. plasma membrane Ca2+ -ATPase isoform 2, pmca2; Ca2+ -ATPase isoform 2, atp2b1a) and regulation (e.g. parathyroid hormone ligand type-1, pth1; stanniocalcin isoform 1, stc1) were significantly downregulated. However, the adverse effects of Cd2+ on otoliths growth and swimming activity can be protected by supplementation of Ca2+ in exposure medium. Body burden of Cd2+ in larvae was reduced upon the supplement with Ca2+. The overall results suggest that exposure to Cd2+ can inhibit influx of Ca2+, leading to less deposition of CaCO3 for otolith growth, and finally result in impaired balance control and swimming activity in zebrafish larvae.
机译:oTolith主要由碳酸钙,纤维和蛋白质组成,对于维持鱼类的平衡和/或感染鱼是至关重要的。偏靠的形成涉及Ca2 +运输和沉积。在本研究中,我们通过使用Zebrafish Embryos作为模型来研究CD2 +对Otoliths开发的影响。结果表明,暴露于CD2 +抑制未降低的横向区域表明的提出的囊性和椎体右侧生长。减少游泳速度,并在CD2 +暴露的幼虫中观察到丢失的平衡控制。与Ca2 +转运有关的基因(例如血浆膜Ca2 + -AtPase同种型2,PMCA2; Ca2 + -AtPase同种型2,ATP2B1A)和调节(例如甲状旁腺激素配体型-1,PTH1;锡烷酰基同种型1,STC1)显着下调。然而,CD2 +对奥醇生长和游泳活性的不利影响可以通过补充暴露培养基的Ca2 +来保护。在Ca2 +补充剂上降低了幼虫CD2 +的身体负担。总体结果表明,暴露于CD2 +可以抑制Ca2 +的流量,导致CaCO 3沉积偏靠的生长,最终导致斑马鱼幼虫的平衡控制和游泳活性受损。

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