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斜带石斑鱼 Period1、Period2 和 Clock 转录本的克隆、组织表达模式和日节律。

Cloning, tissue expression pattern and daily rhythms of Period1, Period2, and Clock transcripts in the flatfish Senegalese sole, Solea senegalensis.

机构信息

Departamento de Biología, Facultad de Ciencias del Mar y Ambientales, Universidad de Cádiz, Campus de Excelencia Internacional del Mar (CEI MAR), 11510, Puerto Real, Spain.

出版信息

J Comp Physiol B. 2012 Jul;182(5):673-85. doi: 10.1007/s00360-012-0653-z. Epub 2012 Feb 29.

DOI:10.1007/s00360-012-0653-z
PMID:22373774
Abstract

An extensive network of endogenous oscillators governs vertebrate circadian rhythmicity. At the molecular level, they are composed of a set of clock genes that participate in transcriptional-translational feedback loops to control their own expression and that of downstream output genes. These clocks are synchronized with the environment, although entrainment by external periodic cues remains little explored in fish. In this work, partial cDNA sequences of clock genes representing both positive (Clock) and negative (Period1, Period2) elements of the molecular feedback loops were obtained from the nocturnal flatfish Senegalese sole, a relevant species for aquaculture and chronobiology. All of the above genes exhibited high identities with their respective teleost clock genes, and Per-Arnt-Sim or basic helix-loop-helix binding domains were recognized in their primary structure. They showed a widespread distribution through the animal body and some of them displayed daily mRNA rhythms in central (retina, optic tectum, diencephalon, and cerebellum) and peripheral (liver) tissues. These rhythms were most robust in retina and liver, exhibiting marked Period1 and Clock daily oscillations in transcript levels as revealed by ANOVA and cosinor analysis. Interestingly, expression profiles were inverted in retina and optic tectum compared to liver. Such differences suggest the existence of tissue-dependent zeitgebers for clock gene expression in this species (i.e., light for retina and optic tectum and feeding time for liver). This study provides novel insight into the location of the molecular clocks (central vs. peripheral) and their different phasing and synchronization pathways, which contributes to better understand the teleost circadian systems and its plasticity.

摘要

广泛的内源性振荡器网络控制着脊椎动物的昼夜节律性。在分子水平上,它们由一组时钟基因组成,这些基因参与转录-翻译反馈环,以控制自身表达和下游输出基因的表达。这些时钟与环境同步,但鱼类的外部周期性线索的同步作用仍知之甚少。在这项工作中,从夜行动物塞内加尔比目鱼中获得了代表分子反馈环的正(Clock)和负(Period1、Period2)元件的时钟基因的部分 cDNA 序列,塞内加尔比目鱼是水产养殖和时间生物学的重要物种。上述所有基因与各自的硬骨鱼时钟基因具有高度的同一性,并且在其一级结构中识别出 Per-Arnt-Sim 或碱性螺旋-环-螺旋结合域。它们在动物体内广泛分布,其中一些基因在中枢(视网膜、视顶盖、间脑和小脑)和外周(肝脏)组织中表现出每日 mRNA 节律。这些节律在视网膜和肝脏中最为明显,通过方差分析和余弦分析显示,转录水平的 Period1 和 Clock 有明显的每日振荡。有趣的是,与肝脏相比,视网膜和视顶盖的表达谱发生了反转。这种差异表明,在这种物种中,时钟基因表达存在组织依赖性的时间信号(即视网膜和视顶盖的光,肝脏的摄食时间)。本研究为分子钟(中枢与外周)及其不同的相位和同步途径的位置提供了新的见解,有助于更好地理解硬骨鱼的昼夜节律系统及其可塑性。

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本文引用的文献

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J Biol Rhythms. 2012 Apr;27(2):135-44. doi: 10.1177/0748730411435303.
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A blind circadian clock in cavefish reveals that opsins mediate peripheral clock photoreception.洞穴鱼的生物钟失聪揭示了视蛋白介导外周时钟光感受。
PLoS Biol. 2011 Sep;9(9):e1001142. doi: 10.1371/journal.pbio.1001142. Epub 2011 Sep 6.
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Comparative analysis of teleost fish genomes reveals preservation of different ancient clock duplicates in different fishes.
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Ontogenetic expression rhythms of visual opsins in senegalese sole are modulated by photoperiod and light spectrum.塞内加尔比目鱼视觉视蛋白的个体发生表达节律受光周期和光质的调节。
J Comp Physiol B. 2020 Mar;190(2):185-204. doi: 10.1007/s00360-020-01264-7. Epub 2020 Feb 11.
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Differential circadian and light-driven rhythmicity of clock gene expression and behaviour in the turbot, Scophthalmus maximus.大菱鲆昼夜节律和光驱动节律的时钟基因表达和行为差异。
PLoS One. 2019 Jul 5;14(7):e0219153. doi: 10.1371/journal.pone.0219153. eCollection 2019.
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Circadian Clocks in Fish-What Have We Learned so far?鱼类的生物钟——我们目前了解到了什么?
Biology (Basel). 2019 Mar 19;8(1):17. doi: 10.3390/biology8010017.
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Time-Lag in Feeding Schedule Acts as a Stressor That Alters Circadian Oscillators in Goldfish.喂食时间表中的时间延迟作为一种应激源,会改变金鱼的昼夜节律振荡器。
Front Physiol. 2018 Dec 5;9:1749. doi: 10.3389/fphys.2018.01749. eCollection 2018.
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Impact of Short-Term Fasting on The Rhythmic Expression of the Core Circadian Clock and Clock-Controlled Genes in Skeletal Muscle of Crucian Carp ().短期禁食对鲫鱼骨骼肌核心生物钟及生物钟调控基因节律性表达的影响()。 (注:括号内原文为空,翻译时保留原样)
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硬骨鱼基因组的比较分析揭示了不同鱼类中不同古老时钟重复基因的保留情况。
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Chronobiol Int. 2011 May;28(5):381-9. doi: 10.3109/07420528.2011.566398.
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Identification of two arylalkylamine N-acetyltranferase 1 genes with different developmental expression profiles in the flatfish Solea senegalensis.鉴定出两种芳基烷基胺 N-乙酰转移酶 1 基因,它们在比目鱼牙鲆中有不同的发育表达谱。
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Exposure of larvae to daily thermocycles affects gonad development, sex ratio, and sexual steroids in Solea senegalensis, kaup.将塞内加尔鳎幼体暴露于每日温度循环中会影响其性腺发育、性别比例和性类固醇。
J Exp Zool A Ecol Genet Physiol. 2011 Mar 1;315(3):162-9. doi: 10.1002/jez.664. Epub 2011 Jan 11.
8
The clock gene Period3 in the nocturnal flatfish Solea senegalensis: Molecular cloning, tissue expression and daily rhythms in central areas.时钟基因 Period3 在夜间型比目鱼塞内加尔鳎中的研究:分子克隆、组织表达及中枢区域的昼夜节律。
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9
Feeding time synchronizes clock gene rhythmic expression in brain and liver of goldfish (Carassius auratus).摄食时间使金鱼(Carassius auratus)大脑和肝脏中的时钟基因节律表达同步。
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