首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >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
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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

机译:锌(Zn)术术患者六个指示剂基因在淡水Teactost黄色鲶鱼pelteobagrus fulvidraco:分子表征,mRNA组织表达和转录变化对Zn暴露

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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.
机译:水生环境中过量的Zn可以是有毒的,导致Zn Suporostasis的功能障碍,这最终影响了各种生物过程的功能。 Zn Soioostasis由Zn运输器控制。该研究克隆并表征了来自黄色鲶鱼Pelteobagrus fulvidraco的六个Zn传输相关基因(ZnT1,ZnT5,ZnT7,ZIP4,ZIP5和MTF-1)的全长cDNA序列。六个基因与其相应的哺乳动物成员份额相似。它们的mRNA量广泛存在于八个组织(肠,肝,脑,心脏,鳃,肌肉,脾脏和肠系膜脂肪)中存在,但在肝脏和肠中相对占主导地位。在第28天,Zn暴露倾向于增加ZnT1,ZnT5和MTF-1的转录物水平,降低肝ZIP5表达,但没有显着影响ZnT7和ZIP4的表达。在第56天,Zn暴露倾向于增加ZnT1和MTF-1的转录水平,下调肝脏mRNA量的ZIP4和ZIP5;在三个Zn处理中,0.5mg Zn / L基团中的ZnT5表达和0.25mg Zn / L基团中的ZnT7表达是最高的。这些基因的mRNA丰度显示出Zn浓度和暴露时间依赖的方式。我们首次表征了鱼类中六个Zn传输相关基因的全长cDNA序列,探讨了它们的组织表达谱和对Zn暴露的转录反应。我们的研究为进一步调查了这些基因的生理功能,为进一步调查了这种基因的生理功能,并提供了进入鱼类的监管机制的新见解。

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