首页> 外文期刊>The British Journal of Nutrition >Selenium status affects selenoprotein expression, reproduction, and F1 generation locomotor activity in zebrafish (Danio rerio).
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Selenium status affects selenoprotein expression, reproduction, and F1 generation locomotor activity in zebrafish (Danio rerio).

机译:硒状态影响斑马鱼(斑马鱼)中硒蛋白的表达,繁殖和F 1 产生的运动活性。

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摘要

Se is an essential trace element, and is incorporated into selenoproteins which play important roles in human health. Mammalian selenoprotein-coding genes are often present as paralogues in teleost fish, and it is unclear whether the expression patterns or functions of these fish paralogues reflect their mammalian orthologues. Using the model species zebrafish (Danio rerio; ZF), we aimed to assess how dietary Se affects key parameters in Se metabolism and utilisation including glutathione peroxidase (GPX) activity, the mRNA expression of key Se-dependent proteins (gpx1a, gpx1b, sepp1a and sepp1b), oxidative status, reproductive success and F1 generation locomotor activity. From 27 d until 254 d post-fertilisation, ZF were fed diets with graded levels of Se ranging from deficient ( < 0.10 mg/kg) to toxic (30 mg/kg). The mRNA expression of gpx1a and gpx1b and GPX activity responded in a similar manner to changes in Se status. GPX activity and mRNA levels were lowest when dietary Se levels (0.3 mg/kg) resulted in the maximum growth of ZF, and a proposed bimodal mechanism in response to Se status below and above this dietary Se level was identified. The expression of the sepp1 paralogues differed, with only sepp1a responding to Se status. High dietary Se supplementation (30 mg/kg) decreased reproductive success, while the offspring of ZF fed above 0.3 mg Se/kg diet had lower locomotor activity than the other groups. Overall, the novel finding of low selenoprotein expression and activity coinciding with maximum body growth suggests that even small Se-induced variations in redox status may influence cellular growth rates. Copyright copyright The Authors 2014.
机译:硒是必需的微量元素,并被掺入硒蛋白中,硒蛋白在人类健康中起重要作用。哺乳动物硒蛋白编码基因通常作为硬骨鱼类的旁系同源物存在,目前尚不清楚这些鱼类旁系同源物的表达模式或功能是否反映了它们的哺乳动物直系同源物。我们使用斑马鱼模型种(Danio rerio; ZF),旨在评估饮食中硒如何影响硒代谢和利用中的关键参数,包括谷胱甘肽过氧化物酶(GPX)活性,关键硒依赖性蛋白(gpx1a,gpx1b,sepp1a)的mRNA表达和sepp1b),氧化状态,生殖成功和F 1 的运动活动。从受精后27天到254天,ZF饲喂的Se分级水平从不足(<0.10 mg / kg)到有毒(30 mg / kg)。 gpx1a和gpx1b的mRNA表达以及GPX活性以类似的方式对硒状态的变化做出反应。当膳食硒水平(0.3 mg / kg)导致ZF最大增长时,GPX活性和mRNA水平最低,并且确定了针对低于或高于该膳食硒水平的硒状态拟议的双峰机制。 sepp1旁系同源物的表达不同,只有sepp1a响应硒状态。高剂量的硒补充(30 mg / kg)降低了生殖成功,而饲喂0.3 mg Se / kg以上的ZF的后代的运动能力比其他组低。总的来说,低硒蛋白表达和活性与最大机体生长相吻合的新发现表明,即使硒诱导的氧化还原状态发生微小变化,也可能影响细胞生长速率。版权版权作者,2014年。

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