首页> 美国卫生研究院文献>Frontiers in Neuroscience >Transcriptome Analysis of Hypothalamic Gene Expression during Daily Torpor in Djungarian Hamsters (Phodopus sungorus)
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Transcriptome Analysis of Hypothalamic Gene Expression during Daily Torpor in Djungarian Hamsters (Phodopus sungorus)

机译:幼年仓鼠(Phodopus sungorus)日常蒸腾过程中下丘脑基因表达的转录组分析。

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摘要

Animals living at high or temperate latitudes are challenged by extensive changes in environmental conditions over seasons. Djungarian hamsters (Phodopus sungorus) are able to cope with extremely cold ambient temperatures and food scarcity in winter by expressing spontaneous daily torpor. Daily torpor is a circadian controlled voluntary reduction of metabolism that can reduce energy expenditure by up to 65% when used frequently. In the past decades it has become more and more apparent, that the hypothalamus is likely to play a key role in regulating induction and maintenance of daily torpor, but the molecular signals, which lead to the initiation of daily torpor, are still unknown. Here we present the first transcriptomic study of hypothalamic gene expression patterns in Djungarian hamsters during torpor entrance. Based on Illumina sequencing we were able to identify a total number of 284 differentially expressed genes, whereby 181 genes were up- and 103 genes down regulated during torpor entrance. The 20 most up regulated group contained eight genes coding for structure proteins, including five collagen genes, dnha2 and myo15a, as well as the procoagulation factor vwf. In a proximate approach we investigated these genes by quantitative real-time PCR (qPCR) analysis over the circadian cycle in torpid and normothermic animals at times of torpor entrance, mid torpor, arousal and post-torpor. These qPCR data confirmed up regulation of dnah2, myo15a, and vwf during torpor entrance, but a decreased mRNA level for all other investigated time points. This suggests that gene expression of structure genes as well as the procoagulation factor are specifically initiated during the early state of torpor and provides evidence for protective molecular adaptions in the hypothalamus of Djungarian hamsters including changes in structure, transport of biomolecules and coagulation.
机译:高海拔或温带地区的动物会随着季节不断变化的环境条件而面临挑战。 Djungarian仓鼠(Phodopus sungorus)能够通过表达自发的每日Torpor来应对极端寒冷的环境温度和冬季的食物短缺。每天进行的玉米粥是由昼夜节律控制的新陈代谢的自愿减少,经常使用时可以减少多达65%的能量消耗。在过去的几十年中,越来越明显的是,下丘脑很可能在调节日常干r的诱导和维持中起关键作用,但是导致日常干por的分子信号仍然未知。在这里,我们介绍下丘脑基因表达模式在竹鼠仓鼠进入下丘脑仓鼠的第一个转录组学研究。基于Illumina测序,我们能够鉴定出总共284个差异表达的基因,其中181个基因被上调,而103个基因被下调。上调的20个组包含编码结构蛋白的8个基因,包括5个胶原蛋白基因dnha2和myo15a,以及促凝血因子vwf。在一种接近的方法中,我们通过定量实时PCR(qPCR)分析在to孔进入,中mid孔,唤醒和后por孔时间的有色和常温动物的昼夜节律周期中研究了这些基因。这些qPCR数据证实了在玉米粥进入过程中dnah2,myo15a和vwf的上调,但在所有其他研究的时间点上,mRNA水平均下降。这表明结构基因的基因表达以及促凝血因子是在玉米粥的早期状态中特异性启动的,并提供了在准仓鼠下丘脑中保护性分子适应性的证据,包括结构的改变,生物分子的运输和凝结。

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