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Allele Workbench: Transcriptome Pipeline and Interactive Graphics for Allele-Specific Expression

机译:等位基因工作台:用于特定等位基因表达的转录组管道和交互式图形

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摘要

Sequencing the transcriptome can answer various questions such as determining the transcripts expressed in a given species for a specific tissue or condition, evaluating differential expression, discovering variants, and evaluating allele-specific expression. Differential expression evaluates the expression differences between different strains, tissues, and conditions. Allele-specific expression evaluates expression differences between parental alleles. Both differential expression and allele-specific expression have been studied for heterosis (hybrid vigor), where the hybrid has improved performance over the parents for one or more traits. The Allele Workbench software was developed for a heterosis study that evaluated allele-specific expression for a mouse F1 hybrid using libraries from multiple tissues with biological replicates. This software has been made into a distributable package, which includes a pipeline, a Java interface to build the database, and a Java interface for query and display of the results. The required input is a reference genome, annotation file, and one or more RNA-Seq libraries with optional replicates. It evaluates allelic imbalance at the SNP and transcript level and flags transcripts with significant opposite directional allele-specific expression. The Java interface allows the user to view data from libraries, replicates, genes, transcripts, exons, and variants, including queries on allele imbalance for selected libraries. To determine the impact of allele-specific SNPs on protein folding, variants are annotated with their effect (e.g., missense), and the parental protein sequences may be exported for protein folding analysis. The Allele Workbench processing results in transcript files and read counts that can be used as input to the previously published Transcriptome Computational Workbench, which has a new algorithm for determining a trimmed set of gene ontology terms. The software with demo files is available from . Additionally, all software is ready for immediate use from an Atmosphere Virtual Machine Image available from the iPlant Collaborative ().
机译:转录组测序可以回答各种问题,例如确定特定物种在特定组织或条件下表达的转录本,评估差异表达,发现变体以及评估等位基因特异性表达。差异表达评估不同菌株,组织和条件之间的表达差异。等位基因特异性表达评估父母等位基因之间的表达差异。已经研究了差异表达和等位基因特异性表达的杂种优势(杂种优势),其中杂种对一个或多个性状的亲代表现有所改善。开发用于杂种优势研究的Allele Workbench软件,可以使用来自多个组织的具有生物复制品的文库评估小鼠F1杂种的等位基因特异性表达。该软件已制成可分发的软件包,其中包括管道,用于构建数据库的Java接口以及用于查询和显示结果的Java接口。所需的输入是参考基因组,注释文件以及一个或多个带有可选重复的RNA-Seq库。它在SNP和转录本水平评估等位基因失衡,并标记具有明显相反方向的等位基因特异性表达的转录本。 Java界面允许用户查看来自库,复制品,基因,转录本,外显子和变体的数据,包括查询选定库的等位基因失衡。为了确定等位基因特异性SNP对蛋白质折叠的影响,对变体进行注释(例如错义),然后可以将亲本蛋白质序列输出以进行蛋白质折叠分析。等位基因工作台处理产生转录本文件和读取的计数,可用作先前发布的转录组计算工作台的输入,该工作台具有用于确定基因本体术语的精简集合的新算法。可从下载带有演示文件的软件。此外,所有软件都可以从iPlant Collaborative()获得的Atmosphere Virtual Machine Image中立即使用。

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