Ren Junxiao, Li Quanlin, Zhang Qinghe, Clinton Michael, Sun Congjiao, Yang Ning
National Engineering Laboratory for Animal Breeding and MOA Key Laboratory of Animal Genetics and Breeding, College of Animal Science and Technology, China Agricultural University, Beijing, China.
Division of Developmental Biology, The Roslin Institute and Royal (Dick) School of Veterinary Studies, University of Edinburgh, Roslin, Midlothian EH25 9RG, United Kingdom.
Poult Sci. 2021 Jul;100(7):101160. doi: 10.1016/j.psj.2021.101160. Epub 2021 Mar 26.
Long noncoding RNAs (lncRNAs) have emerged as important regulators of many biological processes, including embryogenesis and development. To provide a systematic analysis of lncRNAs expressed during chicken embryogenesis, we used Iso-Seq and RNA-Seq to identify potential lncRNAs at embryonic stages from d 1 to d 8 of incubation: sequential stages covering gastrulation, somitogenesis, and organogenesis. The data characterized an expanded landscape of lncRNAs, yielding 45,410 distinct lncRNAs (31,282 genes). Amongst these, a set of 13,141 filtered intergenic lncRNAs (lincRNAs) transcribed from 9803 lincRNA gene loci, of which, 66.5% were novel, were further analyzed. These lincRNAs were found to share many characteristics with mammalian lincRNAs, including relatively short lengths, fewer exons, lower expression levels, and stage-specific expression patterns. Functional studies motivated by "guilt-by-association" associated individual lincRNAs with specific GO functions, providing an important resource for future studies of lincRNA function. Most importantly, a weighted gene co-expression network analysis suggested that genes of the brown module were specifically associated with the day 2 stage. LincRNAs within this module were co-expressed with proteins involved in hematopoiesis and lipid metabolism. This study presents the systematic identification of lincRNAs in developing chicken embryos and will serve as a powerful resource for the study of lincRNA functions.
长链非编码RNA(lncRNAs)已成为许多生物过程(包括胚胎发生和发育)的重要调节因子。为了对鸡胚胎发生过程中表达的lncRNAs进行系统分析,我们使用了全长转录组测序(Iso-Seq)和RNA测序(RNA-Seq)来鉴定孵化第1天至第8天胚胎阶段的潜在lncRNAs:这些连续阶段涵盖了原肠胚形成、体节发生和器官发生。数据描绘了lncRNAs的扩展图谱,产生了45410个不同的lncRNAs(31282个基因)。其中,对从9803个长链基因间非编码RNA(lincRNA)基因位点转录的一组13141个经过筛选的基因间lncRNAs(lincRNAs)进行了进一步分析,其中66.5%是新发现的。这些lincRNAs被发现与哺乳动物lincRNAs具有许多共同特征,包括相对较短的长度、较少的外显子、较低的表达水平和阶段特异性表达模式。基于“关联有罪”的功能研究将个体lincRNAs与特定的基因本体(GO)功能相关联,为未来lincRNA功能研究提供了重要资源。最重要的是,加权基因共表达网络分析表明,棕色模块的基因与第2天阶段特异性相关。该模块内的lincRNAs与参与造血和脂质代谢的蛋白质共表达。本研究对发育中的鸡胚胎中的lincRNAs进行了系统鉴定,将成为lincRNA功能研究的有力资源。