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不同脂肪组织的全长转录组和基因表达分析揭示了参与脂质生物合成的转录变体

Full-Length Transcriptome and Gene Expression Analysis of Different Adipose Tissues Reveals Transcript Variants Involved in Lipid Biosynthesis.

作者信息

An Lixia, Pan Yangyang, Yuan Mengjiao, Wen Zhonghao, Qiao Liying, Wang Weiwei, Liu Jianhua, Li Baojun, Liu Wenzhong

机构信息

College of Animal Science, Shanxi Agricultural University, Jinzhong 030801, China.

School of Food & Environment, Jinzhong College of Information, Jinzhong 030801, China.

出版信息

Animals (Basel). 2023 Dec 19;14(1):7. doi: 10.3390/ani14010007.

Abstract

Sheep have historically been bred globally as a vital food source. To explore the transcriptome of adipose tissue and investigate key genes regulating adipose metabolism in sheep, adipose tissue samples were obtained from F1 Dorper × Hu sheep. High-throughput sequencing libraries for second- and third-generation sequencing were constructed using extracted total RNA. Functional annotation of differentially expressed genes and isoforms facilitated the identification of key regulatory genes and isoforms associated with sheep fat metabolism. SMRT-seq generated 919,259 high-accuracy cDNA sequences after filtering. Full-length sequences were corrected using RNA-seq sequences, and 699,680 high-quality full-length non-chimeric (FLNC) reads were obtained. Upon evaluating the ratio of total lengths based on FLNC sequencing, it was determined that 36,909 out of 56,316 multiple-exon isoforms met the criteria for full-length status. This indicates the identification of 330,375 full-length FLNC transcripts among the 370,114 multiple-exon FLNC transcripts. By comparing the reference genomes, 60,276 loci and 111,302 isoforms were identified. In addition, 43,423 new genes and 44,563 new isoforms were identified. The results identified 185 (3198), 394 (3592), and 83 (3286) differentially expressed genes (transcripts) between tail and subcutaneous, tail and visceral, and subcutaneous and visceral adipose tissues, respectively. Functional annotation and pathway analysis revealed the following observations. (1) Among the differentially expressed genes (DEGs) of TF and SF tissues, the downregulation of , , and was observed in SF, while exhibited upregulation. (2) Among the DEGs of TF and VF tissues, expressions of , , , , and were downregulated in VF, with upregulation of . (3) Among SF and VF expressions of , and were downregulated in VF. Specific differentially expressed genes (, , , , , , and ) and transcripts (NC_056066.1.1866.16 and NC_056066.1.1866.22) were identified as relevant to fat metabolism. These results provide a dataset for further verification of the regulatory pathway associated with fat metabolism in sheep.

摘要

从历史上看,绵羊在全球范围内被饲养作为重要的食物来源。为了探索绵羊脂肪组织的转录组并研究调节脂肪代谢的关键基因,从F1代杜泊×湖羊中获取脂肪组织样本。使用提取的总RNA构建用于第二代和第三代测序的高通量测序文库。对差异表达基因和异构体进行功能注释有助于识别与绵羊脂肪代谢相关的关键调控基因和异构体。经过过滤,单分子实时测序(SMRT-seq)产生了919,259条高精度cDNA序列。使用RNA-seq序列对全长序列进行校正,获得了699,680条高质量的全长非嵌合(FLNC) reads。根据FLNC测序评估全长比例后,确定56,316个多外显子异构体中的36,909个符合全长状态标准。这表明在370,114个多外显子FLNC转录本中鉴定出330,375个全长FLNC转录本。通过与参考基因组比较,鉴定出60,276个基因座和111,302个异构体。此外,还鉴定出43,423个新基因和44,563个新异构体。结果分别鉴定出尾脂与皮下脂肪、尾脂与内脏脂肪、皮下脂肪与内脏脂肪组织之间差异表达的基因(转录本)为185个(3198个)、394个(3592个)和83个(3286个)。功能注释和通路分析揭示了以下观察结果。(1)在尾脂和皮下脂肪组织的差异表达基因(DEGs)中,观察到皮下脂肪中 、 和 下调,而 上调。(2)在尾脂和内脏脂肪组织的DEGs中,内脏脂肪中 、 、 、 和 表达下调, 上调。(3)在皮下脂肪和内脏脂肪的表达中,内脏脂肪中 、 和 下调。特定的差异表达基因( 、 、 、 、 、 和 )和转录本(NC_056066.1.1866.16和NC_056066.1.1866.22)被确定与脂肪代谢相关。这些结果为进一步验证绵羊脂肪代谢相关调控通路提供了数据集。

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