Key Laboratory of Animal Genetics, Breeding and Reproduction, Ministry of Agriculture, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.
Genes (Basel). 2020 Nov 26;11(12):1405. doi: 10.3390/genes11121405.
Alternative splicing (AS) is a process during gene expression that results in a single gene coding for different protein variants. AS contributes to transcriptome and proteome diversity. In order to characterize AS in pigs, genome-wide transcripts and AS events were detected using RNA sequencing of 34 different tissues in Duroc pigs. In total, 138,403 AS events and 29,270 expressed genes were identified. An alternative donor site was the most common AS form and accounted for 44% of the total AS events. The percentage of the other three AS forms (exon skipping, alternative acceptor site, and intron retention) was approximately 19%. The results showed that the most common AS events involving alternative donor sites could produce different transcripts or proteins that affect the biological processes. The expression of genes with tissue-specific AS events showed that gene functions were consistent with tissue functions. AS increased proteome diversity and resulted in novel proteins that gained or lost important functional domains. In summary, these findings extend porcine genome annotation and highlight roles that AS could play in determining tissue identity.
可变剪接(AS)是基因表达过程中的一种机制,导致一个基因编码不同的蛋白质变体。AS 有助于转录组和蛋白质组的多样性。为了研究猪的 AS,本研究通过对杜洛克猪的 34 种不同组织进行 RNA 测序,检测了全基因组转录本和 AS 事件。共鉴定出 138403 个 AS 事件和 29270 个表达基因。供体位点的可变剪接是最常见的 AS 形式,占总 AS 事件的 44%。其他三种 AS 形式(外显子跳跃、可变受体位点和内含子保留)的比例约为 19%。结果表明,涉及供体位点可变剪接的最常见 AS 事件可产生不同的转录本或蛋白质,从而影响生物过程。具有组织特异性 AS 事件的基因的表达表明基因功能与组织功能一致。AS 增加了蛋白质组的多样性,并产生了具有新功能域的新型蛋白质。综上所述,这些发现扩展了猪的基因组注释,并强调了 AS 在决定组织特性方面的作用。