Wang Yunxiang, Wang Qing, Gao Lipu, Zhu Benzhong, Luo Yunbo, Deng Zhiping, Zuo Jinhua
Key Laboratory of the Vegetable Postharvest Treatment of Ministry of Agriculture, Beijing Key Laboratory of Fruits and Vegetable Storage and Processing, Key Laboratory of Biology and Genetic Improvement of Horticultural Crops (North China) of Ministry of Agriculture, Key Laboratory of Urban Agriculture (North) of Ministry of Agriculture, Beijing Vegetable Research Center, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China.
Laboratory of Postharvest Molecular Biology of Fruits and Vegetables, Department of Food Biotechnology, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, 100083, China.
Physiol Plant. 2017 Nov;161(3):311-321. doi: 10.1111/ppl.12600. Epub 2017 Aug 1.
Circular RNAs (circRNAs) are a large class of non-coding endogenous RNAs that could act as competing endogenous RNAs (ceRNAs) to terminate the mRNA targets' suppression of miRNAs. To elucidate the intricate regulatory roles of circRNAs in the ethylene pathway in tomato fruit, deep sequencing and bioinformatics methods were performed. After strict screening, a total of 318 circRNAs were identified. Among these circRNAs, 282 were significantly differentially expressed among wild-type and sense-/antisense-LeERF1 transgenic tomato fruits. Besides, 1254 target genes were identified and a large amount of them were found to be involved in ethylene pathway. In addition, a sophisticated regulatory model consisting of circRNAs, target genes and ethylene was set up. Importantly, 61 circRNAs were found to be potential ceRNAs to combine with miRNAs and some of the miRNAs had been revealed to participate in the ethylene signaling pathway. This research further raised the possibility that the ethylene pathway in tomato fruit may be under the regulation of various circRNAs and provided a new perspective of the roles of circRNAs.
环状RNA(circRNAs)是一大类非编码内源性RNA,其可作为竞争性内源性RNA(ceRNAs)来解除mRNA靶标对miRNA的抑制作用。为阐明circRNAs在番茄果实乙烯途径中的复杂调控作用,我们采用了深度测序和生物信息学方法。经过严格筛选,共鉴定出318个circRNAs。在这些circRNAs中,有282个在野生型以及正义/反义LeERF1转基因番茄果实中显著差异表达。此外,鉴定出1254个靶基因,其中大量靶基因被发现参与乙烯途径。另外,构建了一个由circRNAs、靶基因和乙烯组成的复杂调控模型。重要的是,发现61个circRNAs是与miRNAs结合的潜在ceRNAs,并且一些miRNAs已被揭示参与乙烯信号通路。该研究进一步提出了番茄果实乙烯途径可能受多种circRNAs调控的可能性,并为circRNAs的作用提供了新的视角