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野外转录组学:自由活动的侏儒狐猴的冬眠生理学。

Transcriptomics in the wild: Hibernation physiology in free-ranging dwarf lemurs.

机构信息

Department of Biology, Duke University, Durham, NC, USA.

Institute of Evolutionary Biology (CSIC-Universitat Pompeu Fabra), Barcelona, Spain.

出版信息

Mol Ecol. 2018 Feb;27(3):709-722. doi: 10.1111/mec.14483. Epub 2018 Jan 29.

DOI:10.1111/mec.14483
PMID:29319912
Abstract

Hibernation is an adaptive strategy some mammals use to survive highly seasonal or unpredictable environments. We present the first investigation on the transcriptomics of hibernation in a natural population of primate hibernators: Crossley's dwarf lemurs (Cheirogaleus crossleyi). Using capture-mark-recapture techniques to track the same animals over a period of 7 months in Madagascar, we used RNA-seq to compare gene expression profiles in white adipose tissue (WAT) during three distinct physiological states. We focus on pathway analysis to assess the biological significance of transcriptional changes in dwarf lemur WAT and, by comparing and contrasting what is known in other model hibernating species, contribute to a broader understanding of genomic contributions of hibernation across Mammalia. The hibernation signature is characterized by a suppression of lipid biosynthesis, pyruvate metabolism and mitochondrial-associated functions, and an accumulation of transcripts encoding ribosomal components and iron-storage proteins. The data support a key role of pyruvate dehydrogenase kinase isoenzyme 4 (PDK4) in regulating the shift in fuel economy during periods of severe food deprivation. This pattern of PDK4 holds true across representative hibernating species from disparate mammalian groups, suggesting that the genetic underpinnings of hibernation may be ancestral to mammals.

摘要

冬眠是一些哺乳动物用来在季节性或不可预测的环境中生存的一种适应性策略。我们首次对灵长类动物冬眠者的自然种群中的冬眠转录组进行了研究:十字耳狐猴(Cheirogaleus crossleyi)。我们使用捕获-标记-重捕技术在马达加斯加跟踪同一动物长达 7 个月,使用 RNA-seq 比较了三个不同生理状态下白色脂肪组织(WAT)中的基因表达谱。我们专注于途径分析,以评估在 dwarf lemur WAT 中转录变化的生物学意义,并通过比较和对比其他已知的冬眠模型物种,为更广泛地理解哺乳动物中冬眠的基因组贡献做出贡献。冬眠特征表现为抑制脂质生物合成、丙酮酸代谢和与线粒体相关的功能,以及核糖体成分和铁储存蛋白的转录本积累。数据支持丙酮酸脱氢酶激酶同工酶 4(PDK4)在调节严重食物匮乏期间燃料经济性转变中的关键作用。这种 PDK4 模式在来自不同哺乳动物群体的有代表性的冬眠物种中都存在,这表明冬眠的遗传基础可能是哺乳动物的祖先。

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