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Novel software package for cross-platform transcriptome analysis (CPTRA)

机译:用于跨平台转录组分析(CPTRA)的新型软件包

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Background Next-generation sequencing techniques enable several novel transcriptome profiling approaches. Recent studies indicated that digital gene expression profiling based on short sequence tags has superior performance as compared to other transcriptome analysis platforms including microarrays. However, the transcriptomic analysis with tag-based methods often depends on available genome sequence. The use of tag-based methods in species without genome sequence should be complemented by other methods such as cDNA library sequencing. The combination of different next generation sequencing techniques like 454 pyrosequencing and Illumina Genome Analyzer (Solexa) will enable high-throughput and accurate global gene expression profiling in species with limited genome information. The combination of transcriptome data acquisition methods requires cross-platform transcriptome data analysis platforms, including a new software package for data processing. Results Here we presented a software package, CPTRA: C ross- P latform TR anscriptome A nalysis, to analyze transcriptome profiling data from separate methods. The software package is available at http://people.tamu.edu/~syuan/cptra/cptra.html . It was applied to the case study of non-target site glyphosate resistance in horseweed; and the data was mined to discover resistance target gene(s). For the software, the input data included a long-read sequence dataset with proper annotation, and a short-read sequence tag dataset for the quantification of transcripts. By combining the two datasets, the software carries out the unique sequence tag identification, tag counting for transcript quantification, and cross-platform sequence matching functions, whereby the short sequence tags can be annotated with a function, level of expression, and Gene Ontology (GO) classification. Multiple sequence search algorithms were implemented and compared. The analysis highlighted the importance of transport genes in glyphosate resistance and identified several candidate genes for down-stream analysis. Conclusion CPTRA is a powerful software package for next generation sequencing-based transcriptome profiling in species with limited genome information. According to our case study, the strategy can greatly broaden the application of the next generation sequencing for transcriptome analysis in species without reference genome sequence.
机译:背景技术下一代测序技术使几种新颖的转录组分析方法成为可能。最近的研究表明,与包括微阵列在内的其他转录组分析平台相比,基于短序列标签的数字基因表达谱具有更高的性能。然而,基于标签的方法的转录组分析通常取决于可用的基因组序列。在没有基因组序列的物种中使用基于标签的方法应辅之以其他方法,例如cDNA文库测序。 454焦磷酸测序和Illumina基因组分析仪(Solexa)等不同的下一代测序技术的结合将在基因组信息有限的情况下实现高通量和准确的全球基因表达谱分析。转录组数据采集方法的组合需要跨平台的转录组数据分析平台,包括用于数据处理的新软件包。结果在这里,我们介绍了一个软件包CPTRA:Cross-P平台TR anscriptome A分析,以分析来自不同方法的转录组分析数据。该软件包可从http://people.tamu.edu/~syuan/cptra/cptra.html获得。它被用于马草中非目标部位草甘膦抗性的案例研究;并挖掘数据以发现抗性靶基因。对于该软件,输入数据包括带有适当注释的长读序列数据集和用于转录本定量的短读序列标签数据集。通过结合这两个数据集,该软件可以执行独特的序列标签识别,用于转录本定量的标签计数以及跨平台序列匹配功能,从而可以使用功能,表达水平和基因本体( GO)分类。实现并比较了多个序列搜索算法。该分析突出了转运基因在草甘膦抗性中的重要性,并确定了一些候选基因用于下游分析。结论CPTRA是功能强大的软件包,用于在基因组信息有限的物种中进行基于下一代测序的转录组分析。根据我们的案例研究,该策略可以大大扩展下一代测序技术在无参考基因组序列的物种中进行转录组分析的应用。

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