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比较组织转录组学揭示了不同组织之间的动态差异,但在为从蛰伏状态苏醒做准备时,代谢转录本的优先级是保守的。

Comparative tissue transcriptomics highlights dynamic differences among tissues but conserved metabolic transcript prioritization in preparation for arousal from torpor.

作者信息

Bogren Lori K, Grabek Katharine R, Barsh Gregory S, Martin Sandra L

机构信息

Cell and Developmental Biology, University of Colorado School of Medicine, Aurora, USA.

Department of Genetics, Stanford University, Stanford, USA.

出版信息

J Comp Physiol B. 2017 Jul;187(5-6):735-748. doi: 10.1007/s00360-017-1073-x. Epub 2017 Mar 23.

Abstract

During the hibernation season, 13-lined ground squirrels spend days to weeks in torpor with body temperatures near freezing then spontaneously rewarm. The molecular drivers of the drastic physiological changes that orchestrate and permit torpor are not well understood. Although transcription effectively ceases at the low body temperatures of torpor, previous work has demonstrated that some transcripts are protected from bulk degradation in brown adipose tissue (BAT), consistent with the importance of their protein products for metabolic heat generation during arousal from torpor. We examined the transcriptome of skeletal muscle, heart, and liver to determine the patterns of differentially expressed genes in these tissues, and whether, like BAT, a subset of these were relatively increased during torpor. EDGE-tags were quantified from five distinct physiological states representing the seasonal and torpor-arousal cycles of 13-lined ground squirrels. Supervised clustering on relative transcript abundances with Random Forest separated the two states bracketing prolonged torpor, entrance into and aroused from torpor, in all three tissues. Independent analyses identified 3347, 6784, and 2433 differentially expressed transcripts among all sampling points in heart, skeletal muscle, and liver, respectively. There were few differentially expressed genes in common across all three tissues; these were enriched in mitochondrial and apoptotic pathway components. Divisive clustering of these data revealed unique cohorts of transcripts that increased across the torpor bout in each tissue with patterns reflecting various combinations of cycling within and between seasons as well as between torpor and arousal. Transcripts that increased across the torpor bout were likewise tissue specific. These data shed new light on the biochemical pathways that alter in concert with hibernation phenotype and provide a rich resource for further hypothesis-based studies.

摘要

在冬眠季节,13条纹地松鼠会经历数天至数周的蛰伏期,体温接近冰点,然后自行回暖。协调并允许蛰伏的剧烈生理变化的分子驱动因素尚未得到充分了解。尽管在蛰伏的低温下转录有效地停止了,但先前的研究表明,一些转录本在棕色脂肪组织(BAT)中受到保护,不会被大量降解,这与其蛋白质产物在从蛰伏中苏醒时产生代谢热的重要性相一致。我们检查了骨骼肌、心脏和肝脏的转录组,以确定这些组织中差异表达基因的模式,以及是否像BAT一样,其中一部分在蛰伏期间相对增加。从代表13条纹地松鼠季节性和蛰伏-苏醒周期的五种不同生理状态中对EDGE标签进行了定量。使用随机森林对相对转录本丰度进行监督聚类,将所有三种组织中围绕长时间蛰伏的两个状态,即进入蛰伏和从蛰伏中苏醒,区分开来。独立分析分别在心脏、骨骼肌和肝脏的所有采样点中鉴定出3347、6784和2433个差异表达的转录本。在所有三种组织中,共同的差异表达基因很少;这些基因在线粒体和凋亡途径成分中富集。对这些数据进行分裂聚类揭示了在每个组织的蛰伏期内增加的独特转录本群体,其模式反映了季节内和季节间以及蛰伏和苏醒之间循环的各种组合。在蛰伏期内增加的转录本同样具有组织特异性。这些数据为与冬眠表型协同变化的生化途径提供了新的见解,并为进一步基于假设的研究提供了丰富的资源。

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