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首页> 外文期刊>Environmental Science and Pollution Research >Development and evaluation of gene expression biomarkers for chemical pollution in common frog ( Rana temporaria) tadpoles
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Development and evaluation of gene expression biomarkers for chemical pollution in common frog ( Rana temporaria) tadpoles

机译:普通青蛙化学污染基因表达生物标志物的开发与评价(<重点型=“斜体”> RANA Temporaria )蝌蚪

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Pollutants have been proposed as one factor in the worldwide declines of amphibian species and populations. Applying gene expression analysis of liver RNA in tadpoles would be a possible approach for biomarker measurements to increase knowledge of ecological health in amphibian populations. The major aim of this study was to explore the relevance of applying gene expression analyses of cytochrome p450 ( cyp1a ), metallothionein ( mt ), and vitellogenin ( vtg ) in Rana temporaria tadpoles. Therefore, tadpoles were exposed for 1?week to β-naphthoflavone (BNF), cadmium chloride (CdCl~(2)), and ethinylestradiol (EE2). Primers were developed for RT-qPCR to analyze gene expression in livers. The result showed that the methods for gene expression analyses of cyp1a , mt , and vtg as well as the reference gene β-actin (bact) were successful not only in R. temporaria but also in another amphibian, Rana arvalis . The gene expression of cyp1a was induced by BNF and the gene expression of mt was induced by CdCl~(2)but no significant induction was recorded in vtg expression after exposure to EE2. Gene expressions varied throughout the tadpole metamorphosis development, in particular for vtg . Overall, the use of gene expression of cyp1a and mt as biomarkers in wild tadpoles seems promising while the use of vtg seems less relevant due to high natural variation and low background expression. The study shows that variations in gene expressions between tadpoles of different genetic origin are important to consider when evaluating the data. The present study has thus increased the background knowledge about gene expression applicability as biomarker for tadpoles.
机译:已提出污染物作为全球两栖物种和人口下降的一个因素。在蝌蚪肝脏RNA的基因表达分析将是生物标志物测量的可能方法,以增加两栖市人群生态健康知识。本研究的主要目的是探讨在Rana Temporaria Tadpoles中应用细胞色素P450(CYP1A),Metallothione素(MT)和Vitellogenin(VTG)的基因表达分析的相关性。因此,将蝌蚪暴露于β-萘洛伐克(BNF),氯化镉(CdCl〜(2))和乙炔雌二醇(EE2)。开发引物用于RT-QPCR以分析肝脏中的基因表达。结果表明,CYP1A,MT和VTG的基因表达分析以及参考基因β-肌动蛋白(Bact)的方法不仅在R. Temporaria中成功,而且还在另一种两栖动物中成功,rana Arvalis。通过BNF诱导CYP1a的基因表达,并通过CDCl〜(2)诱导MT的基因表达,但在暴露于EE2后,在VTG表达中记录了显着的诱导。基因表达在整个蝌蚪变态发育中变化,特别是对于VTG。总的来说,使用CYP1A和MT的基因表达作为野生蝌蚪中的生物标志物似乎有望,而由于高自然变化和低背景表达,VTG的使用似乎不那么相关。该研究表明,在评估数据时,不同遗传来源的蝌蚪之间基因表达的变化很重要。因此,本研究提高了关于基因表达适用性的背景知识作为蝌蚪的生物标志物。

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