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Transgenerational regulation of cbln11 gene expression in the olfactory rosette of the European sea bass (Dicentrarchus labrax) exposed to ocean acidification

机译:在欧洲鲈鱼(Dicentrarchus Labrax)暴露于海洋酸化的嗅觉中CBLN11基因表达的转基因调节

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摘要

Elevated amounts of atmospheric CO2 are causing ocean acidification (OA) that may affect marine organisms including fish species. While several studies carried out in fish revealed that OA induces short term dysfunction in sensory systems including regulation of neurons activity in olfactory epithelium, information on the effects of OA on other physiological processes and actors is scarcer. In the present study we focused our attention on a European sea bass (Dicentrarchus labrax) sghC1q gene, a member of the C1q-domain-containing (C1qDC) protein family. In vertebrates, C1qDC family includes actors involved in different physiological processes including immune response and synaptic organization. Our microsynteny analysis revealed that this sghC1q gene is the orthologous gene in European sea bass to zebrafish (Danio rerio) cbln11 gene. We cloned the full length cbln11 mRNA and identified the different domains (the signal peptide, the coiled coil region and the globular C1q domain) of the deduced protein sequence. Investigation of mRNA expression by qPCR and in situ hybridization revealed that cbln11 gene is especially expressed in the non-sensory epithelium of the olfactory rosette at larval and adult stages. The expression of cbln11 mRNA was analysed by qPCR in the first generation (FO) of European sea bass broodstock exposed since larval stages to water pH of 8.0 (control) or 7.6 (predicted for year 2100) and in their offspring (F1) maintained in the environmental conditions of their parents. Our results showed that cbln11 mRNA expression level was lower in larvae exposed to OA then up-regulated at adult stage in the olfactory rosette of F0 and that this up-regulation is maintained under OA at larval and juvenile stages in F1. Overall, this work provides evidence of a transgenerational inheritance of OA-induced up-regulation of cbln11 gene expression in European sea bass. Further studies will investigate the potential immune function of cbln11 gene and the consequences of these regulations, as well as the possible implications in terms of fitness and adaptation to OA in European sea bass.
机译:升高的大气二氧化碳量导致海洋酸化(OA)可能影响包括鱼类在内的海洋生物。虽然鱼类中的几项研究表明,OA诱导感觉系统中的短期功能障碍,包括嗅性上皮中神经元活性的调节,有关OA对其他生理过程和演员的影响的信息是稀缺的。在本研究中,我们将注意力集中在欧洲鲈鱼(Dicentrarchus Labrax)SGHC1Q基因上,是含C1Q域(C1QDC)蛋白质家族的成员。在脊椎动物中,C1QDC家族包括参与不同生理过程的演员,包括免疫应答和突触组织。我们的Microynteny分析显示,这种SGHC1Q基因是欧洲鲈鱼的正交基因Zebrafish(Danio Rerio)CBLN11基因。我们克隆了全长CBLN11 mRNA,并鉴定了推导的蛋白质序列的不同结构域(信号肽,盘绕线圈区域和球状C1Q结构域)。通过QPCR和原位杂交的MRNA表达的研究表明,CBLN11基因特别在幼虫和成人阶段的嗅莲花中的非感觉上皮中表达。通过欧洲海底贝斯的第一代(FO)在欧洲鲈鱼的第一代(FO)中分析CBLN11 mRNA的表达,因为幼虫阶段为8.0(对照)或7.6(预计2100)和其后代(F1)维持父母的环境条件。我们的结果表明,在F0的嗅觉玫瑰花玫瑰花玫瑰果汁中,CBLN11 mRNA表达水平下降到OA,然后在成人阶段上调节,并且该上调在F1的幼虫和幼年阶段在OA下维持。总体而言,这项工作提供了OA诱导的欧洲鲈鱼CBLN11基因表达对oA诱导的造影的转基因遗传的证据。进一步的研究将探讨CBLN11基因的潜在免疫功能以及这些法规的后果,以及在欧洲鲈鱼的健身和适应对OA方面的可能影响。

著录项

  • 来源
    《Marine Environmental Research》 |2020年第7期|105022.1-105022.11|共11页
  • 作者单位

    Univ Brest IFREMER CNRS IRD LEMAR F-29280 Plouzane France;

    Univ Brest IFREMER CNRS IRD LEMAR F-29280 Plouzane France;

    IFREMER SEBIMER F-29280 Plouzane France;

    IFREMER SEBIMER F-29280 Plouzane France;

    Univ Brest IFREMER CNRS IRD LEMAR F-29280 Plouzane France;

    Univ Brest IFREMER CNRS IRD LEMAR F-29280 Plouzane France;

    Univ Brest IFREMER CNRS IRD LEMAR F-29280 Plouzane France;

    Univ Brest IFREMER CNRS IRD LEMAR F-29280 Plouzane France;

    Univ Brest IFREMER CNRS IRD LEMAR F-29280 Plouzane France;

    Univ Brest IFREMER CNRS IRD LEMAR F-29280 Plouzane France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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