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镉暴露降低了发育中的斑马鱼中特定的离子细胞亚型的密度。

Cadmium exposure reduces the density of a specific ionocyte subtype in developing zebrafish.

机构信息

Department of Biology, York University, Toronto, Ontario, Canada.

Department of Biology, York University, Toronto, Ontario, Canada.

出版信息

Chemosphere. 2020 Apr;244:125535. doi: 10.1016/j.chemosphere.2019.125535. Epub 2019 Dec 6.

Abstract

The present study examined the effects of waterborne cadmium (Cd) exposure on ionic balance and ionocyte density in developing zebrafish (Danio rerio) (0-4 days post-fertilization). Fish exposed to 1 or 10 μg Cd/L exhibited an increase in whole body Cd level. Exposure to 10 μg Cd/L also significantly reduced whole body content of Ca, but not other major ions (e.g., Na, K and Mg). Such reduction was accompanied by a decrease in the density of Ca-transporting ionocytes, the Na/K-ATPase-rich cells (NaRCs). However, the densities of other ionocyte subtypes (e.g., Na-transporting ionocytes) remained unchanged after exposure to 10 μg Cd/L. The potential interactive effects between water chemistry and Cd exposure on ionocyte density were examined further in Cd-exposed larvae acclimated to different water NaCl or Ca levels. The results demonstrated that NaRC density increased in fish acclimated to low Ca water, presumably increasing Ca uptake for maintaining Ca homeostasis. However, Cd exposure completely abolished the increased NaRC density in low water Ca environments. The increased NaRCs over development was also reduced in Cd-exposed larvae. In conclusion, our study suggested that Cd exposure reduces the density of NaRCs and suppresses the compensatory regulation of NaRCs during acclimation to low water Ca level. These inhibitory effects by Cd exposure ultimately disrupt Ca balance in the early life stages of zebrafish.

摘要

本研究探讨了水相镉(Cd)暴露对发育中的斑马鱼(Danio rerio)(受精后 0-4 天)离子平衡和离子细胞密度的影响。暴露于 1 或 10μgCd/L 的鱼体中 Cd 水平整体升高。暴露于 10μgCd/L 还显著降低了鱼体中 Ca 的含量,但不影响其他主要离子(如 Na、K 和 Mg)。这种减少伴随着 Ca 转运离子细胞(富含 Na/K-ATPase 的细胞,NaRCs)密度的降低。然而,暴露于 10μgCd/L 后,其他离子细胞亚型(如 Na 转运离子细胞)的密度没有变化。进一步研究了水化学和 Cd 暴露对离子细胞密度的潜在相互作用效应,在适应不同水 NaCl 或 Ca 水平的 Cd 暴露幼虫中进行了研究。结果表明,适应低 Ca 水的鱼中 NaRC 密度增加,可能增加 Ca 摄取以维持 Ca 体内平衡。然而,Cd 暴露完全消除了低水 Ca 环境中 NaRC 密度的增加。Cd 暴露幼虫中发育过程中增加的 NaRCs 也减少了。总之,我们的研究表明,Cd 暴露降低了 NaRC 的密度,并抑制了在适应低水 Ca 水平时对 NaRC 的代偿性调节。这些 Cd 暴露的抑制作用最终破坏了斑马鱼早期生命阶段的 Ca 平衡。

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