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首页> 外文期刊>The Plant Cell >Global dissection of alternative splicing in paleopolyploid soybean.
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Global dissection of alternative splicing in paleopolyploid soybean.

机译:古多倍体大豆的选择性剪接的全球解剖。

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Alternative splicing (AS) is common in higher eukaryotes and plays an important role in gene posttranscriptional regulation. It has been suggested that AS varies dramatically among species, tissues, and duplicated gene families of different sizes. However, the genomic forces that govern AS variation remain poorly understood. Here, through genome-wide identification of AS events in the soybean (Glycine max) genome using high-throughput RNA sequencing of 28 samples from different developmental stages, we found that more than 63% of multiexonic genes underwent AS. More AS events occurred in the younger developmental stages than in the older developmental stages for the same type of tissue, and the four main AS types, exon skipping, intron retention, alternative donor sites, and alternative acceptor sites, exhibited different characteristics. Global computational analysis demonstrated that the variations of AS frequency and AS types were significantly correlated with the changes of gene features and gene transcriptional level. Further investigation suggested that the decrease of AS within the genome-wide duplicated genes were due to the diminution of intron length, exon number, and transcriptional level. Altogether, our study revealed that a large number of genes were alternatively spliced in the soybean genome and that variations in gene structure and transcriptional level may play important roles in regulating AS.
机译:选择性剪接(AS)在高等真核生物中很常见,并在基因转录后调控中发挥重要作用。已经提出,AS在物种,组织和重复的不同大小的基因家族之间变化很大。但是,控制AS变化的基因组力仍然知之甚少。在这里,通过使用来自不同发育阶段的28个样品的高通量RNA测序,对大豆(Glycine max)基因组中的AS事件进行全基因组鉴定,我们发现超过63%的多外显子基因经历了AS。对于相同类型的组织,较年轻的发育阶段发生的AS事件多于较早的发育阶段,并且四种主要的AS类型(外显子跳跃,内含子保留,替代供体位点和替代受体位点)表现出不同的特征。全局计算分析表明,AS频率和AS类型的变化与基因特征和基因转录水平的变化显着相关。进一步的研究表明,全基因组重复基因中AS的减少是由于内含子长度,外显子数量和转录水平的降低。总之,我们的研究表明,大豆基因组中有大量基因被交替剪接,并且基因结构和转录水平的变异可能在调节AS中起重要作用。

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