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六种淡水鱼类黄颡鱼锌稳态相关的指示基因:分子特征、mRNA 组织表达和锌暴露下的转录变化。

Six indicator genes for zinc (Zn) homeostasis in freshwater teleost yellow catfish Pelteobagrus fulvidraco: molecular characterization, mRNA tissue expression and transcriptional changes to Zn exposure.

机构信息

Key Laboratory of Freshwater Animal Breeding, Ministry of Agriculture of P.R.C., Fishery College, Huazhong Agricultural University, Wuhan, 430070, China.

出版信息

Biometals. 2018 Aug;31(4):527-537. doi: 10.1007/s10534-018-0099-1. Epub 2018 Apr 4.

Abstract

Excessive Zn in the aquatic environment can be toxic and causes dysfunction in Zn homeostasis for fish, which ultimately influences the function of various biological processes. Zn homeostasis is controlled by Zn transporters. This study cloned and characterized the full-length cDNA sequences of six Zn transport-relevant genes (ZnT1, ZnT5, ZnT7, ZIP4, ZIP5 and MTF-1) from yellow catfish Pelteobagrus fulvidraco. The six genes share similar domains to their corresponding members of mammals. Their mRNA amounts were widely existent across eight tissues (intestine, liver, brain, heart, gill, muscle, spleen and mesenteric fat), but relatively predominant in the liver and intestine. On day 28, Zn exposure tended to increase transcript levels of ZnT1, ZnT5 and MTF-1, decrease hepatic ZIP5 expression, but did not significantly affect the expression of ZnT7 and ZIP4. On day 56, Zn exposure tended to increase transcript levels of ZnT1 and MTF-1, down-regulate hepatic mRNA amounts of ZIP4 and ZIP5; among three Zn treatments, ZnT5 expression in the 0.5 mg Zn/L group and ZnT7 expression in the 0.25 mg Zn/L group were the highest. The mRNA abundances of these genes showed Zn concentration- and exposure time-dependent manners. For the first time, we characterized the full-length cDNA sequences of six Zn transport-relevant genes in fish, explored their tissue expression profiles and transcriptional responses to Zn exposure. Our study built good basis for further investigating their physiological functions of these genes and provided new insights into the regulatory mechanisms of Zn homeostasis in fish.

摘要

水环境中过量的 Zn 可能具有毒性,并导致鱼类体内 Zn 动态平衡失调,从而最终影响各种生物过程的功能。Zn 动态平衡受 Zn 转运体控制。本研究从黄颡鱼(Pelteobagrus fulvidraco)克隆并鉴定了 6 个与 Zn 转运相关的全长 cDNA 序列(ZnT1、ZnT5、ZnT7、ZIP4、ZIP5 和 MTF-1)。这 6 个基因与哺乳动物的相应成员具有相似的结构域。它们的 mRNA 在 8 种组织(肠、肝、脑、心、鳃、肌肉、脾和肠系膜脂肪)中广泛存在,但在肝和肠中相对优势。第 28 天,Zn 暴露会增加 ZnT1、ZnT5 和 MTF-1 的转录水平,降低肝 ZIP5 的表达,但对 ZnT7 和 ZIP4 的表达没有显著影响。第 56 天,Zn 暴露会增加 ZnT1 和 MTF-1 的转录水平,下调肝 ZIP4 和 ZIP5 的 mRNA 含量;在三种 Zn 处理中,0.5mg/L Zn 组的 ZnT5 表达和 0.25mg/L Zn 组的 ZnT7 表达最高。这些基因的 mRNA 丰度表现出 Zn 浓度和暴露时间的依赖性。本研究首次在鱼类中鉴定了 6 个 Zn 转运相关基因的全长 cDNA 序列,研究了它们的组织表达谱以及对 Zn 暴露的转录响应。本研究为进一步研究这些基因的生理功能以及深入了解鱼类 Zn 动态平衡的调控机制奠定了良好基础。

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