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Identification of molecular stress indicators in pikeperch Sander lucioperca correlating with rising water temperatures

机译:施用与上升水温的分子胁迫指示剂的鉴定与升水温度相关

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摘要

Water temperature is doubtlessly one of the most important factors affecting the well-being of fish. For pikeperch Sander lucioperca an ambient water temperature of & 20 degrees C has been suggested to achieve optimal growth in aquaculture farms, although natural habitats of pikeperch seldom reach such temperatures. We used multiplex qPCR arrays to assess the impact of temperature between 15 degrees C and 25 degrees C based on the expression of 38 potential biomarker genes characterising heat shock and hypoxia response, immune activation, energy supply and development in the liver and gills of pikeperch. In addition, liquid chromatography/mass spectrometry was used to assess the individual levels of glucocorticoids. Our data revealed that pikeperch do not develop severe responses to ambient temperatures between 15 degrees C and 25 degrees C, although specific parameters indicated a phased restriction of optimal conditions, above all the heat-shock genes SERPINH1, HSP90AA1 and HSPA8b; the acute-phase genes HP, C3 and SAA; and the transcription factor-encoding gene HMX1. In contrast to these in vivo observations, a temperature rise up to 37 degrees C led to an acute response in VVF2-Sander cells characterised by the pronounced upregulation of HSP90AA1, HSP1A1, SERPINH1, HSPB1, HSPA8b and HSPB8. This report paves the ground for future assessment studies on the imbalanced homeostasis of pikeperch by means of molecular tools.
机译:水温无疑是影响鱼类福祉的最重要因素之一。对于Pikeperch桑德朗涅卡的环境水温& 已经提出了20摄氏度,以实现水产养殖农场的最佳增长,尽管Pikeperch的自然栖息地很少达到这样的温度。基于38个潜在的生物标志物基因的表达,使用多重QPCR阵列来评估温度在15摄氏度和25摄氏度之间的影响,这些潜在的生物标志物基因表征热冲击和缺氧反应,免疫激活,能量供应和Pikeperch的鳃。此外,使用液相色谱/质谱法来评估个体糖皮质激素的各级。我们的数据显示,派克普克不会在15摄氏度和25摄氏度之间产生严重的环境温度的严重反应,尽管特定参数表明了最佳条件的分阶段限制,高于所有热冲击基因SerpinH1,HSP90AA1和HSPA8B;急性期基因HP,C3和SAA;和转录因子编码基因HMX1。与这些体内观察结果相比,温度上升至37℃,导致VVF2-砂光细胞中的急性反应,其特征在于HSP90AA1,HSP1A1,SerpinH1,HSPB1,HSPA8B和HSPB8的明显上调。本报告铺设了未来评估研究对Pikeperch的不平衡稳态的评估研究。

著录项

  • 来源
    《Aquaculture》 |2019年第2019期|共12页
  • 作者单位

    Leibniz Inst Farm Anim Biol FBN Inst Genome Biol Fish Genet Unit Wilhelm Stahl Allee 2 D-18196 Dummerstorf Germany;

    Leibniz Inst Freshwater Ecol &

    Inland Fisheries I Dept Ecophysiol &

    Aquaculture Muggelseedamm 310 D-12587 Berlin Germany;

    Univ Rostock Fac Agr &

    Environm Sci Aquaculture &

    Sea Ranching Justus von Liebig Weg 2 D-18059 Rostock Germany;

    Leibniz Inst Freshwater Ecol &

    Inland Fisheries I Dept Ecophysiol &

    Aquaculture Muggelseedamm 310 D-12587 Berlin Germany;

    Leibniz Inst Farm Anim Biol FBN Inst Genome Biol Fish Genet Unit Wilhelm Stahl Allee 2 D-18196 Dummerstorf Germany;

    Leibniz Inst Farm Anim Biol FBN Inst Genome Biol Fish Genet Unit Wilhelm Stahl Allee 2 D-18196 Dummerstorf Germany;

    Leibniz Inst Farm Anim Biol FBN Inst Genome Biol Fish Genet Unit Wilhelm Stahl Allee 2 D-18196 Dummerstorf Germany;

    Leibniz Inst Farm Anim Biol FBN Inst Genome Biol Fish Genet Unit Wilhelm Stahl Allee 2 D-18196 Dummerstorf Germany;

    Leibniz Inst Farm Anim Biol FBN Inst Genome Biol Fish Genet Unit Wilhelm Stahl Allee 2 D-18196 Dummerstorf Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

    Cortisol; Heat-shock proteins; Multiplex-qPCR assay; Mass spectometry; Pikeperch; Temperature stress; Welfare;

    机译:皮质醇;热冲击蛋白;多重 - QPCR测定;质谱;Pikeperch;温度应激;福利;
  • 入库时间 2022-08-20 16:45:48

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