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全转录组研究揭示了m6A对定安鹅(Anser cygnoides orientalis)胚胎肌肉发育的调控作用。

Transcriptome-wide study revealed m6A regulation of embryonic muscle development in Dingan goose (Anser cygnoides orientalis).

作者信息

Xu Tieshan, Xu Zijie, Lu Lizhi, Zeng Tao, Gu Lihong, Huang Yongzhen, Zhang Shunjin, Yang Peng, Wen Yifan, Lin Dajie, Xing Manping, Huang Lili, Liu Guojun, Chao Zhe, Sun Weiping

机构信息

Institute of Animal Science & Veterinary Medicine, Hainan Academy of Agricultural Sciences, No. 14 Xingdan Road, Haikou, 571100, People's Republic of China.

Tropical Crops Genetic Resources Institute, Chinese Academy of Tropical Agricultural Sciences, Haikou, 571101, People's Republic of China.

出版信息

BMC Genomics. 2021 Apr 14;22(1):270. doi: 10.1186/s12864-021-07556-8.

Abstract

BACKGROUND

The number of myofiber is determined during the embryonic stage and does not increase during the postnatal period for birds, including goose. Thus, muscle production of adult goose is pre-determined during embryogenesis. Previous studies show N-methyladenosine (m6A) is an important regulator for skeletal muscle development of birds and miRNAs play as a co-regulator for the skeletal muscle development in birds. Herein, we sequenced m6A and miRNA transcriptomes to investigate the profiles of m6A and their potential mechanism of regulating breast muscle development in Dingan Goose.

RESULTS

We selected embryonic 21th day (E21) and embryonic 30th day (E30) to investigate the roles of transcriptome-wide m6A modification combining with mRNAs and miRNAs in goose breast muscle development. In this study, m6A peaks were mainly enriched in coding sequence (CDS) and start codon and397 genes were identified as differentially methylated genes (DMGs). GO and KEGG analysis showed that DMGs were highly related to cellular and metabolic process and that most DMGs were enriched in muscle-related pathways including Wnt signaling pathway, mTOR signaling and FoxO signaling pathway. Interestingly, a negative correlation between m6A methylation level and mRNA abundance was found through the analysis of m6A-RNA and RNA-seq data. Besides, we found 26 muscle-related genes in 397 DMGs. We also detected 228 differentially expressed miRNAs (DEMs), and further found 329 genes shared by the target genes of DEMs and DMGs (m6A-miRNA-genes), suggesting a tightly relationship between DEMs and DMGs. Among the m6A-miRNA-genes, we found 10 genes are related to breast muscle development. We further picked out an m6A-miRNA-gene, PDK3, from the 10 genes to visualize it and the result showed differentially methylated peaks on the mRNA transcript consistent with our m6A-seq results.

CONCLUSION

GO and KEGG of DMGs between E21 and E30 showed most DMGs were muscle-related. In total, 228 DEMs were found, and the majority of DMGs were overlapped with the targets of DEGs. The differentially methylated peaks along with an m6A-miRNA-gene, PDK3, showed the similar results with m6A-seq results. Taken together, the results presented here provide a reference for further investigation of embryonic skeletal muscle development mechanism in goose.

摘要

背景

包括鹅在内的鸟类,其肌纤维数量在胚胎期就已确定,出生后不再增加。因此,成年鹅的肌肉生成在胚胎发育过程中就已预先确定。先前的研究表明,N-甲基腺苷(m6A)是鸟类骨骼肌发育的重要调节因子,而微小RNA(miRNA)作为鸟类骨骼肌发育的共调节因子发挥作用。在此,我们对m6A和miRNA转录组进行测序,以研究定安鹅胸肌发育过程中m6A的图谱及其潜在调控机制。

结果

我们选择胚胎第21天(E21)和胚胎第30天(E30),以研究全转录组范围的m6A修饰与mRNA和miRNA相结合在鹅胸肌发育中的作用。在本研究中,m6A峰主要富集在编码序列(CDS)和起始密码子处,共鉴定出397个基因作为差异甲基化基因(DMG)。基因本体(GO)和京都基因与基因组百科全书(KEGG)分析表明,DMG与细胞和代谢过程高度相关,且大多数DMG富集于肌肉相关途径,包括Wnt信号通路、mTOR信号通路和FoxO信号通路。有趣的是,通过对m6A-RNA和RNA测序数据的分析,发现m6A甲基化水平与mRNA丰度呈负相关。此外,我们在397个DMG中发现了26个与肌肉相关的基因。我们还检测到228个差异表达的miRNA(DEM),并进一步发现DEM的靶基因与DMG共有329个基因(m6A-miRNA-基因),这表明DEM与DMG之间存在紧密关系。在m6A-miRNA-基因中,我们发现有10个基因与胸肌发育相关。我们从这10个基因中进一步挑选出一个m6A-miRNA-基因PDK3进行可视化分析,结果显示mRNA转录本上的差异甲基化峰与我们的m6A测序结果一致。

结论

E21和E30之间DMG的GO和KEGG分析表明,大多数DMG与肌肉相关。总共发现了228个DEM,且大多数DMG与DEG的靶标重叠。差异甲基化峰以及一个m6A-miRNA-基因PDK3显示出与m6A测序结果相似的结果。综上所述,本文结果为进一步研究鹅胚胎骨骼肌发育机制提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f8b/8048326/0ff4edeb5a4b/12864_2021_7556_Fig1_HTML.jpg

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