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Computer simulation reveals selection of library is related to read length of solexa sequencing in genome projects

机译:计算机模拟揭示文库的选择与基因组项目中solexa测序的阅读长度有关

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In order to find the difference role of 200bp and 500bp libraries for genome assembly, a tool named SRSL was developed. It can simulate random solexa libraries based on reference sequence. Different depth and different read length of 200bp and 500bp libraries were produced by SRSL in four model species (rice, Arabidopsis, fruit fly and yeast). After assembling these sequences and calculating their contig N50 and scaffold N50, 200bp and 500bp libraries were compared for genome assembly. It is suggested that selection of 200bp or 500bp is closely related to read length of solexa sequence in the four genomes. When the read length of solexa is 50bp, it is shown 200bp and 500bp libraries should be selected together. When the read length of solexa is 100bp, it is sugguested 200bp library is not necessary to be sequenced. It is obviously different with past experience of solexa sequencing in genome projects. It would provide effective guide for solexa sequencing in the future genome projects.
机译:为了找到200bp和500bp文库在基因组组装中的不同作用,开发了一种名为SRSL的工具。它可以根据参考序列模拟随机的Solexa库。 SRSL在四种模式物种(大米,拟南芥,果蝇和酵母)中产生了200bp和500bp的不同深度和不同读取长度的文库。组装这些序列并计算其重叠群N50和支架N50后,比较200bp和500bp文库的基因组组装。提示选择200bp或500bp与四个基因组中solexa序列的阅读长度密切相关。当solexa的读取长度为50bp时,显示200bp和500bp的文库应一起选择。当solexa的读取长度为100bp时,建议200bp的文库不必进行测序。这与以往基因组项目中solexa测序的经验明显不同。它将为将来的基因组计划中的solexa测序提供有效的指导。

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