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DASE: Condition-specific differential alternative splicing variants estimation method without reference genome sequence, and its application to non-model organisms

机译:Dase:条件特异性差异替代拼接变体估计方法,无参考基因组序列,及其对非模型生物的应用

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Alternative splicing is a mechanism to produce gene expression diversity under the constraint of a limited number of genes, causing spatiotemporal gene expression in many tissues and developmental processes in organisms. This mechanism is well studied in model organisms but not in non-model organisms because the current standard method requires genomic sequences as well as fully annotated information of exons and introns, that are not accessible from non-model organisms. However, it is essential to uncover the landscape of alternative splicing of organisms to understand its evolutionary impacts and roles. We developed a method for condition-specific alternative splicing estimation based on de novo transcriptome assembly, and it would help to enlarge knowledge of alternative splicing functionalized in non-model organisms. The software is deposited to https://github.com/koukiyonezawa/DASE.
机译:替代剪接是在有限数量的基因的约束下产生基因表达多样性的机制,导致许多组织中的时空基因表达和生物体的发育过程。这种机制在模型生物中进行了很好地研究,但不在非模型生物中,因为目前的标准方法需要基因组序列以及从非模型生物体无法访问的外显子和内含子的完全注释信息。然而,必须揭示有机体的替代剪接景观,以了解其进化的影响和角色。我们开发了一种基于DE Novo转录组件的条件特定的替代剪接估计方法,并且有助于扩大非模型生物中官能化的替代剪接的知识。该软件已存入https://github.com/koukiyonezawa/dase。

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