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首页> 外文期刊>Fisheries and Aquatic Sciences >Transgene chgH-rfp expression at developmental stages and reproductive status in marine medaka {Oryzias dancena)
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Transgene chgH-rfp expression at developmental stages and reproductive status in marine medaka {Oryzias dancena)

机译:海洋medaka(Oryzias dancena)发育阶段的转基因chgH-rfp表达和生殖状况

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Background: The transgenic approach using estrogen-responsive regulator in fish has been given much attention as a potential means to detect and/or address estrogen-related aquatic pollutions. In order to address the development stage- and reproduction status-dependent expression patterns of the chgH-rfp transgene (red fluorescent protein transgene driven by choriogenin H promoter) in marine medaka Oryzias dancena, naturally occurring red fluorescent protein (RFP) signals under non-exposed conditionsas well as the transgenically induced RFP signals under estrogen-exposed conditions were assayed.Results: Female transgenics begun to show naturally occurring RFP signals from the age of 7 weeks post hatching (WPH) without experimental estrogen exposure. Afterward, these RFP signals in female transgenics became robust with the progress of ovarian maturation. On the other hand, male transgenics did not show any naturally occurring RFP signal under non-exposed conditions irrespective of developmental stages and maturation statue. Upon exposures using estradiol-17p (E2) and 17ct-ethinylestradiol (EE2), RFP signals were significantly induced specifically in the livers of transgenic males.Conclusions: Male chgH-rfp transgenics were able to keep the "off' state of RFP expression during their entire life cycle unless exposed to exogenous estrogens. Owing to their tight regulation capability of estrogen-responsive transgene, transgenesis ofchgH-rfp in male marine medaka could offer a useful model system for future ecotoxicogenomic studies regarding estrogenicity-related issues in aquatic and marine environments.
机译:背景:在鱼类中使用雌激素响应性调节剂的转基因方法已受到广泛关注,作为检测和/或解决与雌激素有关的水生污染的潜在手段。为了解决chgH-rfp转基因(由choriogenin H启动子驱动的红色荧光蛋白转基因)的发育阶段和繁殖状态相关的表达模式,该蛋白在非高粱下自然产生红色荧光蛋白(RFP)信号。结果:雌性转基因从孵化后(WPH)的7周龄开始显示天然存在的RFP信号,而没有实验性雌激素暴露。之后,随着卵巢成熟的进展,女性转基因中的这些RFP信号变得更强健。另一方面,无论发育阶段和成熟状态如何,雄性转基因在未暴露条件下均未显示任何天然存在的RFP信号。在使用雌二醇-17p(E2)和17ct-炔雌醇(EE2)进行暴露后,RFP信号在转基因雄性肝脏中被特异性诱导。结论:雄性chgH-rfp转基因能够保持RFP表达“关闭”状态由于其对雌激素反应性转基因的严格调控能力,chgH-rfp的转基因在雄性海洋中的转基因作用可能为今后有关水生和海洋环境中与雌激素相关的问题的生态毒理基因组研究提供有用的模型系统。

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