McCarthy Sean D, Dugon Michel M, Power Anne Marie
School of Natural Sciences, Ryan Institute for Environmental, Marine and Energy Research, National University of Ireland Galway , Ireland.
PeerJ. 2015 Dec 1;3:e1436. doi: 10.7717/peerj.1436. eCollection 2015.
The requirement for high quality/non-degraded RNA is essential for an array of molecular biology analyses. When analysing the integrity of rRNA from the barnacle Lepas anatifera (Phylum Arthropoda, Subphylum Crustacea), atypical or sub-optimal rRNA profiles that were apparently degraded were observed on a bioanalyser electropherogram. It was subsequently discovered that the rRNA was not degraded, but arose due to a 'gap deletion' (also referred to as 'hidden break') in the 28S rRNA. An apparent excision at this site caused the 28S rRNA to fragment under heat-denaturing conditions and migrate along with the 18S rRNA, superficially presenting a 'degraded' appearance. Examination of the literature showed similar observations in a small number of older studies in insects; however, reading across multiple disciplines suggests that this is a wider issue that occurs across the Animalia and beyond. The current study shows that the 28S rRNA anomaly goes far beyond insects within the Arthropoda and is widespread within this phylum. We confirm that the anomaly is associated with thermal conversion because gap-deletion patterns were observed in heat-denatured samples but not in gels with formaldehyde-denaturing.
高质量/未降解的RNA对于一系列分子生物学分析至关重要。在分析茗荷(节肢动物门,甲壳亚门)的rRNA完整性时,在生物分析仪电泳图上观察到明显降解的非典型或次优rRNA图谱。随后发现rRNA并未降解,而是由于28S rRNA中的“缺口缺失”(也称为“隐藏断裂”)导致的。该位点的明显切除导致28S rRNA在热变性条件下断裂,并与18S rRNA一起迁移,表面上呈现出“降解”的外观。对文献的研究表明,在少数关于昆虫的早期研究中有类似的观察结果;然而,综合多个学科的研究表明,这是一个在动物界及其他领域广泛存在的问题。当前的研究表明,28S rRNA异常现象远远超出了节肢动物门中的昆虫范围,在该门中广泛存在。我们证实这种异常与热转化有关,因为在热变性样品中观察到了缺口缺失模式,而在甲醛变性凝胶中未观察到。