Faculty of Biosciences and Aquaculture, University of Nordland, 8049 Bodø, Norway.
Gene. 2013 May 1;519(2):222-30. doi: 10.1016/j.gene.2013.02.028. Epub 2013 Feb 27.
Photoperiod manipulation during early juvenile stages can influence growth in Atlantic cod. In the present study, one group of cod juveniles were reared under natural photoperiod conditions for Bodø (67° N, 14° E), whereas their counterparts were kept under continuous illumination. The mean weight of juvenile cod reared under continuous illumination was found to be 13% greater than those kept under natural photoperiod after 120days of light treatment. The molecular basis of this phenotypic plasticity is currently unknown but it is likely that DNA (cytosine-5)-methyltransferases (dnmts) are involved, since these genes play a crucial role in epigenetic regulation of gene expression. Phylogenetic analysis of Atlantic cod dnmt1, dnmt2 and dnmt3a revealed that within each group, the phylogeny follows the taxonomic relationship between the various species and comparative mapping of dnmt paralogues showed that these genes lie within regions of conserved synteny amongst teleosts. Of the three dnmt paralogues, dnmt3a had the highest expression in fast muscle of adult cod. In addition, dnmt1 and dnmt2 were differentially expressed between tissues but with prominent expression in gonads. Dnmt1 and dnmt3a transcript levels showed a significant increase in fast muscle of juvenile cod from the continuous light group at several time points. Remarkably, dnmt1 and dnmt3a transcript levels were 2-fold higher at 120days, by which point photoperiod conditions between the two light groups had become identical. Our data revealed that photoperiod can have an extended effect on expression of dnmt genes, which may be involved in the epigenetic regulation of muscle growth by photoperiod in Atlantic cod.
光周期在幼鱼早期阶段的调控可以影响大西洋鳕鱼的生长。在本研究中,一组幼鳕鱼在自然光周期条件下在博德(北纬 67 度,东经 14 度)进行饲养,而它们的对照组则保持连续光照。经过 120 天的光照处理后,连续光照下饲养的幼鳕鱼的平均体重比自然光照下饲养的幼鳕鱼高 13%。这种表型可塑性的分子基础目前尚不清楚,但很可能涉及 DNA(胞嘧啶-5)-甲基转移酶(dnmts),因为这些基因在基因表达的表观遗传调控中起着关键作用。大西洋鳕鱼 dnmt1、dnmt2 和 dnmt3a 的系统发育分析表明,在每个组内,系统发育遵循不同物种之间的分类关系,dnmt 同源物的比较作图表明这些基因位于硬骨鱼中保守的同线性区域内。在这三个 dnmt 同源物中,dnmt3a 在成年鳕鱼的快速肌中表达最高。此外,dnmt1 和 dnmt2 在组织之间存在差异表达,但在性腺中表达明显。在几个时间点,连续光照组的幼鳕鱼快速肌中的 dnmt1 和 dnmt3a 转录水平显著增加。值得注意的是,在 120 天时,dnmt1 和 dnmt3a 的转录水平显著增加,此时两个光照组之间的光周期条件已经相同。我们的数据表明,光周期可以对 dnmt 基因的表达产生扩展效应,这可能涉及到光周期对大西洋鳕鱼肌肉生长的表观遗传调控。