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单分子实时测序(SMRT)和Illumina测序相结合,揭示了梅花鹿中miRNA的器官特异性和年龄特异性表达模式。

The combination of SMRT sequencing and Illumina sequencing highlights organ-specific and age-specific expression patterns of miRNAs in Sika Deer.

作者信息

Jia Boyin, Wang Xue, Ma Fuquan, Li Xin, Han Xintong, Zhang Linlin, Li Jianming, Diao Naichao, Shi Kun, Ge Chenxia, Yang Fuhe, Du Rui

机构信息

College of Animal Medicine, College of Animal Science and Technology, Jilin Agricultural University, Changchun, China.

Laboratory of Production and Product Application of Sika Deer of Jilin Province, Jilin Agricultural University, Changchun, China.

出版信息

Front Vet Sci. 2022 Nov 14;9:1042445. doi: 10.3389/fvets.2022.1042445. eCollection 2022.

Abstract

Due to the lack of high-quality Sika Deer () transcriptome and sRNAome across multiple organs or development stages, it is impossible to comprehensively analyze the mRNA and miRNA regulatory networks related to growth, development and immunity response. In this study, we used single molecule-real time sequencing (SMRT-seq) and Illumina sequencing methods to generate transcriptome and sRNAome from ten tissues and four age groups of Sika Deer to help us understand molecular characteristics and global miRNA expression profiles. The results showed that a total of 240,846 consensus transcripts were generated with an average length of 2,784 bp. 4,329 Transcription factors (TFs), 109,000 Simple Sequence Repeats (SSRs) and 18,987 Long non-coding RNAs (LncRNAs) were identified. Meanwhile, 306 known miRNAs and 143 novel miRNAs were obtained. A large number of miRNAs showed organ-specific and age-specific differential expression patterns. In particular, we found that the organ-specific miRNAs were enriched in the brain, some of which shared only between the brain and adrenal. These miRNAs were involved in maintaining specific functions within the brain and adrenal. By constructing miRNA96mRNA interaction networks associated with Sika Deer immunity, we found that miRNAs (miR-148a, miR-26a, miR-214, let-7b, etc.) and mRNAs (CD6, TRIM38, C3, CD163, etc.) might play an important role in the immune response of Sika Deer spleen. Together, our study generated an improved transcript annotation for Sika Deer by SMRT-seq and revealed the role of miRNA in regulating the growth, development and immunity response of Sika Deer.

摘要

由于缺乏跨多个器官或发育阶段的高质量梅花鹿转录组和小RNA组,因此无法全面分析与生长、发育和免疫反应相关的mRNA和miRNA调控网络。在本研究中,我们使用单分子实时测序(SMRT-seq)和Illumina测序方法,从梅花鹿的十个组织和四个年龄组中生成转录组和小RNA组,以帮助我们了解分子特征和整体miRNA表达谱。结果显示,共生成了240,846个共有转录本,平均长度为2,784 bp。鉴定出4,329个转录因子(TF)、109,000个简单序列重复(SSR)和18,987个长链非编码RNA(LncRNA)。同时,获得了306个已知miRNA和143个新miRNA。大量miRNA呈现出器官特异性和年龄特异性差异表达模式。特别地,我们发现器官特异性miRNA在大脑中富集,其中一些仅在大脑和肾上腺之间共享。这些miRNA参与维持大脑和肾上腺内的特定功能。通过构建与梅花鹿免疫相关的miRNA96mRNA相互作用网络,我们发现miRNA(miR-148a、miR-26a、miR-214、let-7b等)和mRNA(CD6、TRIM38、C3、CD163等)可能在梅花鹿脾脏的免疫反应中发挥重要作用。总之,我们的研究通过SMRT-seq为梅花鹿生成了改进的转录注释,并揭示了miRNA在调节梅花鹿生长、发育和免疫反应中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcdd/9701854/47279c673054/fvets-09-1042445-g0001.jpg

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