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The circadian transcriptome of marine fish (Sparus aurata) larvae reveals highly synchronized biological processes at the whole organism level

机译:海洋鱼类(Sparus aurata)幼虫的昼夜节律转录组揭示了整个生物体水平上高度同步的生物过程

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摘要

The regulation of circadian gene expression remains largely unknown in farmed fish larvae. In this study, a high-density oligonucleotide microarray was used to examine the daily expression of 13,939 unique genes in whole gilthead sea bream (Sparus aurata) larvae with fast growth potentiality. Up to 2,229 genes were differentially expressed, and the first two components of Principal Component Analysis explained more than 81% of the total variance. Clustering analysis of differentially expressed genes identified 4 major clusters that were triggered sequentially, with a maximum expression at 0 h, 3 h, 9–15 h and 18-21 h zeitgeber time. Various core clock genes (per1, per2, per3, bmal1, cry1, cry2, clock) were identified in clusters 1–3, and their expression was significantly correlated with several genes in each cluster. Functional analysis revealed a daily consecutive activation of canonical pathways related to phototransduction, intermediary metabolism, development, chromatin remodeling, and cell cycle regulation. This daily transcriptome of whole larvae resembles a cell cycle (G1/S, G2/M, and M/G1 transitions) in synchronization with multicellular processes, such as neuromuscular development. This study supports that the actively feeding fish larval transcriptome is temporally organized in a 24-h cycle, likely for maximizing growth and development.
机译:在养殖的鱼幼体中,昼夜节律基因表达的调控仍然是未知的。在这项研究中,使用高密度寡核苷酸微阵列检查了具有快速生长潜力的整个金头鲷(Sparus aurata)幼虫中13,939个独特基因的日常表达。差异表达了多达2,229个基因,主成分分析的前两个成分解释了总变异的81%以上。差异表达基因的聚类分析确定了4个主要簇,这些簇被顺序触发,最大表达分别在0 h,3 h,9-15 h和18-21 h zeitgeber时间。在聚类1-3中鉴定了各种核心时钟基因(per1,per2,per3,bmal1,cry1,cry2,clock),并且它们的表达与每个聚类中的几个基因显着相关。功能分析表明,与光转导,中间代谢,发育,染色质重塑和细胞周期调节有关的规范途径每天连续激活。整个幼虫的每日转录组类似于一个细胞周期(G1 / S,G2 / M和M / G1过渡),与多细胞过程(例如神经肌肉发育)同步。这项研究支持主动喂鱼的幼虫转录组在24小时周期内暂时组织起来,这可能会最大化其生长发育。

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