Lyons Pierre J, Storey Kenneth B, Morin Pier
Department of Chemistry and Biochemistry, Université de Moncton, 18 Antonine-Maillet avenue, Moncton, New Brunswick E1A 3E9, Canada.
Institute of Biochemistry, Carleton University, 1125 Colonel By Drive, Ottawa, Ontario K1S 5B6, Canada.
Cryobiology. 2015 Aug;71(1):97-102. doi: 10.1016/j.cryobiol.2015.05.002. Epub 2015 May 18.
Insect cold hardiness is associated with substantial metabolic rate suppression, often including developmental diapause as well as metabolic suppression imposed by freezing and freeze-associated oxygen limitation. MicroRNAs, small non-coding transcripts that bind to mRNA, are known modulators of hypometabolism in freeze tolerant insects. To further contribute to the growing signature of stress-responsive miRNAs, this study amplified and quantified changes in the expression levels of four microRNA species, miR-8, miR-9, miR-92b and miR-277, in response to freezing or anoxia exposures of freeze tolerant gall fly larvae, Eurosta solidaginis. MiR-92b levels were significantly elevated by 1.57-fold in frozen E. solidaginis at -15°C as compared with 5°C controls, whereas miR-92b levels were significantly reduced in anoxic E. solidaginis to levels that were 0.77-fold as compared with larvae held under normoxic conditions. The other miRNAs investigated showed no significant changes in stressed larvae. These data demonstrate differential miR-92b expression in frozen/anoxic versus control insect larvae and position this miRNA as a stress responsive marker in this model insect.
昆虫的耐寒性与显著的代谢率抑制相关,通常包括发育滞育以及由冷冻和与冷冻相关的氧气限制所导致的代谢抑制。微小RNA是与信使核糖核酸结合的小型非编码转录本,是耐寒昆虫低代谢的已知调节因子。为了进一步丰富应激反应性微小RNA的特征,本研究对耐寒瘿蚊幼虫(金缕梅实蝇)在冷冻或缺氧暴露后,四种微小RNA(miR-8、miR-9、miR-92b和miR-277)的表达水平变化进行了扩增和定量分析。与5°C的对照相比,在-15°C冷冻的金缕梅实蝇中,miR-92b的水平显著升高了1.57倍,而在缺氧的金缕梅实蝇中,miR-92b的水平显著降低,与常氧条件下饲养的幼虫相比,降至0.77倍。所研究的其他微小RNA在应激幼虫中未显示出显著变化。这些数据表明,在冷冻/缺氧与对照昆虫幼虫中,miR-92b的表达存在差异,并将这种微小RNA定位为这种模式昆虫中的应激反应标记物。