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耐寒昆虫 Eurosta solidaginis 中 microRNA 物种的差异表达。

Differential expression of microRNA species in a freeze tolerant insect, Eurosta solidaginis.

机构信息

Department of Chemistry and Biochemistry, Université de Moncton, 18 Antonine-Maillet Avenue, Moncton, New Brunswick, Canada E1A 3E9.

出版信息

Cryobiology. 2012 Dec;65(3):210-4. doi: 10.1016/j.cryobiol.2012.06.005. Epub 2012 Jul 2.

Abstract

Freeze tolerance in insects is associated with a variety of adaptations including production of cryoprotectants, specialized proteins that regulate ice formation, and energy-saving mechanisms that strongly suppress the rates of metabolic processes in the oxygen-limited frozen state. We hypothesized that microRNAs (miRNAs), small non-coding transcripts that bind to mRNA, could play a role in the global regulation of energy-expensive mRNA translation in frozen insects and would be modulated at subzero temperatures. Expression levels of miRNA species were evaluated in control (5 °C) and frozen (-15 °C) goldenrod gall fly larvae, Eurosta solidaginis, using a miRNA microarray. Levels of miR-11, miR-276, miR-71, miR-3742, miR-277-3p, miR-2543b and miR-34 were significantly reduced in frozen larvae whereas miR-284, miR-3791-5p and miR-92c-3p rose significantly in frozen larvae. Target prediction for two miRNAs, miR-277-3p and miR-284, revealed potential regulation of transcripts involved in translation and the Krebs cycle. These data constitute the first report that differential expression of miRNAs occurs in a freeze tolerant insect and suggest a mechanism for reversible gene regulation during prolonged periods of freezing over the winter months, a mechanism that can be rapidly reversed to allow renewed translation of mRNA when temperatures rise and insects thaw.

摘要

昆虫的抗冻性与多种适应机制有关,包括产生抗冻保护剂、调节冰晶形成的特殊蛋白质以及节能机制,这些机制在缺氧的冷冻状态下强烈抑制代谢过程的速率。我们假设 microRNAs(miRNAs),即与 mRNA 结合的小非编码转录本,可能在冷冻昆虫中能量消耗 mRNA 翻译的全局调控中发挥作用,并在亚零度温度下被调节。使用 miRNA 微阵列评估了控制(5°C)和冷冻(-15°C)的一枝黄花瘤瘿蜂幼虫,Eurosta solidaginis 中 miRNA 物种的表达水平。miR-11、miR-276、miR-71、miR-3742、miR-277-3p、miR-2543b 和 miR-34 的水平在冷冻幼虫中显著降低,而 miR-284、miR-3791-5p 和 miR-92c-3p 在冷冻幼虫中显著升高。对两个 miRNA,miR-277-3p 和 miR-284 的靶预测表明,翻译和三羧酸循环涉及的转录物可能受到调控。这些数据首次表明,在一种抗冻昆虫中存在 miRNA 的差异表达,并为在冬季长时间冷冻期间进行可逆基因调控的机制提供了依据,当温度升高和昆虫解冻时,这种机制可以迅速逆转,允许 mRNA 重新翻译。

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