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大足鼠耳蝠(Rhinolophus ferrumequinum)活跃期与蛰伏期大脑转录组的比较。

Comparison of brain transcriptome of the greater horseshoe bats (Rhinolophus ferrumequinum) in active and torpid episodes.

作者信息

Lei Ming, Dong Dong, Mu Shuo, Pan Yi-Hsuan, Zhang Shuyi

机构信息

Institute of Molecular Ecology and Evolution, SKLEC & IECR, East China Normal University, Shanghai, China.

出版信息

PLoS One. 2014 Sep 24;9(9):e107746. doi: 10.1371/journal.pone.0107746. eCollection 2014.

Abstract

Hibernation is an energy-saving strategy which is widely adopted by heterothermic mammals to survive in the harsh environment. The greater horseshoe bat (Rhinolophus ferrumequinum) can hibernate for a long period in the hibernation season. However, the global gene expression changes between hibernation and non-hibernation season in the greater horseshoe bat remain largely unknown. We herein reported a comprehensive survey of differential gene expression in the brain between winter hibernating and summer active greater horseshoe bats using next-generation sequencing technology. A total of 90,314,174 reads were generated and we identified 1,573 differentially expressed genes between active and torpid states. Interestingly, we found that differentially expressed genes are over-represented in some GO categories (such as metabolic suppression, cellular stress responses and oxidative stress), which suggests neuroprotective strategies might play an important role in hibernation control mechanisms. Our results determined to what extent the brain tissue of the greater horseshoe bats differ in gene expression between summer active and winter hibernating states and provided comprehensive insights into the adaptive mechanisms of bat hibernation.

摘要

冬眠是一种节能策略,被变温哺乳动物广泛采用以在恶劣环境中生存。大马蹄蝠(Rhinolophus ferrumequinum)在冬眠季节可以长时间冬眠。然而,大马蹄蝠在冬眠和非冬眠季节之间的全球基因表达变化在很大程度上仍然未知。我们在此报告了一项使用下一代测序技术对冬季冬眠和夏季活跃的大马蹄蝠大脑中差异基因表达的全面调查。总共产生了90,314,174条读数,我们在活跃状态和蛰伏状态之间鉴定出1,573个差异表达基因。有趣的是,我们发现差异表达基因在一些基因本体论(GO)类别中过度富集(如代谢抑制、细胞应激反应和氧化应激),这表明神经保护策略可能在冬眠控制机制中起重要作用。我们的结果确定了大马蹄蝠脑组织在夏季活跃状态和冬季冬眠状态之间基因表达的差异程度,并为蝙蝠冬眠的适应性机制提供了全面的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2bd/4174523/75095e8daba2/pone.0107746.g001.jpg

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