a GenPhySE, Université de Toulouse, INRA, ENVT , Castanet-Tolosan , France.
b Institute of Genome Biology, Leibniz Institute for Farm Animal Biology (FBN) , Dummerstorf , Germany.
RNA Biol. 2019 Sep;16(9):1190-1204. doi: 10.1080/15476286.2019.1621621. Epub 2019 Jun 3.
To investigate the dynamics of circRNA expression in pig testes, we designed specific strategies to individually study circRNA production from intron lariats and circRNAs originating from back-splicing of two exons. By applying these methods on seven Total-RNA-seq datasets sampled during the testicular puberty, we detected 126 introns in 114 genes able to produce circRNAs and 5,236 exonic circRNAs produced by 2,516 genes. Comparing our RNA-seq datasets to datasets from the literature (embryonic cortex and postnatal muscle stages) revealed highly abundant intronic and exonic circRNAs in one sample each in pubertal testis and embryonic cortex, respectively. This abundance was due to higher production of circRNA by the same genes in comparison to other testis samples, rather than to the recruitment of new genes. No global relationship between circRNA and mRNA production was found. We propose ExoCirc-9244 () as a marker of a particular stage in testis, which is characterized by a very low plasma estradiol level and a high abundance of circRNA in testis. We hypothesize that the abundance of testicular circRNA is associated with an abrupt switch of the cellular process to overcome a particular challenge that may have arisen in the early stages of steroid production. We also hypothesize that, in certain circumstances, isoforms and circular transcripts from different genes share functions and that a global regulation of circRNA production is established. Our data indicate that this massive production of circRNAs is much more related to the structure of the genes generating circRNAs than to their function. PE: Paired Ends; CR: chimeric Read; SR: Split Read; circRNA: circular RNA; NC: non conventional; ExoCirc-RNA: exonic circular RNA; IntroLCirc-: name of a porcine intronic lariat circRNA; ExoCirc-: name of a porcine exonic circRNA; IntronCircle-: name of a porcine intron circle; sisRNA: stable intronic sequence RNA; P: porcine breed Pietrain; LW: porcine breed Large White; RT: reverse transcription/reverse transcriptase; Total-RNA-seq: RNA-seq obtained from total RNA after ribosomal depletion; mRNA-seq: RNA-seq of poly(A) transcripts; TPM: transcripts per million; CR-PM: chimeric reads per million; RBP: RNA binding protein; miRNA: micro RNA; E2: estradiol; DHT: dihydrotestesterone.
为了研究猪睾丸中 circRNA 表达的动态变化,我们设计了特定的策略来分别研究内含子套索和两个外显子反向剪接产生的 circRNA 的产生。通过在睾丸青春期的七个总 RNA-seq 数据集上应用这些方法,我们在 114 个基因中检测到了 126 个能够产生 circRNA 的内含子,在 2516 个基因中检测到了 5236 个外显子 circRNA。将我们的 RNA-seq 数据集与文献中的数据集(胚胎皮质和出生后肌肉阶段)进行比较,发现青春期睾丸和胚胎皮质各有一个样本中高度丰富的内含子和外显子 circRNA。这种丰度是由于同一基因产生的 circRNA 比其他睾丸样本更多,而不是由于新基因的招募。我们没有发现 circRNA 与 mRNA 产生之间存在全局关系。我们提出 ExoCirc-9244()作为睾丸中特定阶段的标志物,该标志物的特点是血浆雌二醇水平极低,睾丸中 circRNA 丰度高。我们假设睾丸 circRNA 的丰度与细胞过程的突然转变有关,以克服类固醇产生早期可能出现的特定挑战。我们还假设,在某些情况下,来自不同基因的异构体和环状转录本共享功能,并且建立了 circRNA 产生的全局调控。我们的数据表明,这种大量的 circRNA 产生与产生 circRNA 的基因的结构关系更密切,而与它们的功能关系不大。PE:配对末端;CR:嵌合读段;SR:分裂读段;circRNA:环状 RNA;NC:非常规;ExoCirc-RNA:外显子环状 RNA;IntroLCirc-:猪内含子套索 circRNA 的名称;ExoCirc-:猪外显子 circRNA 的名称;IntronCircle-:猪内含子环的名称;sisRNA:稳定内含子序列 RNA;P:皮特兰猪品种;LW:大白猪品种;RT:逆转录/逆转录酶;总 RNA-seq:核糖体耗尽后从总 RNA 获得的 RNA-seq;mRNA-seq:多聚(A)转录物的 RNA-seq;TPM:每百万个转录本;CR-PM:每百万个嵌合读段;RBP:RNA 结合蛋白;miRNA:微 RNA;E2:雌二醇;DHT:二氢睾酮。