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首页> 外文期刊>BMC Genomics >High-throughput transcriptome sequencing and preliminary functional analysis in four Neotropical tree species
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High-throughput transcriptome sequencing and preliminary functional analysis in four Neotropical tree species

机译:四种新热带树种的高通量转录组测序和初步功能分析

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Background The Amazonian rainforest is predicted to suffer from ongoing environmental changes. Despite the need to evaluate the impact of such changes on tree genetic diversity, we almost entirely lack genomic resources. Results In this study, we analysed the transcriptome of four tropical tree species (Carapa guianensis, Eperua falcata, Symphonia globulifera and Virola michelii) with contrasting ecological features, belonging to four widespread botanical families (respectively Meliaceae, Fabaceae, Clusiaceae and Myristicaceae). We sequenced cDNA libraries from three organs (leaves, stems, and roots) using 454 pyrosequencing. We have developed an R and bioperl-based bioinformatic procedure for de novo assembly, gene functional annotation and marker discovery. Mismatch identification takes into account single-base quality values as well as the likelihood of false variants as a function of contig depth and number of sequenced chromosomes. Between 17103 (for Symphonia globulifera) and 23390 (for Eperua falcata) contigs were assembled. Organs varied in the numbers of unigenes they apparently express, with higher number in roots. Patterns of gene expression were similar across species, with metabolism of aromatic compounds standing out as an overrepresented gene function. Transcripts corresponding to several gene functions were found to be over- or underrepresented in each organ. We identified between 4434 (for Symphonia globulifera) and 9076 (for Virola surinamensis) well-supported mismatches. The resulting overall mismatch density was comprised between 0.89 (S. globulifera) and 1.05 (V. surinamensis) mismatches/100 bp in variation-containing contigs. Conclusion The relative representation of gene functions in the four transcriptomes suggests that secondary metabolism may be particularly important in tropical trees. The differential representation of transcripts among tissues suggests differential gene expression, which opens the way to functional studies in these non-model, ecologically important species. We found substantial amounts of mismatches in the four species. These newly identified putative variants are a first step towards acquiring much needed genomic resources for tropical tree species.
机译:背景技术亚马逊雨林预计将遭受持续的环境变化的影响。尽管有必要评估此类变化对树木遗传多样性的影响,但我们几乎完全缺乏基因组资源。结果在这项研究中,我们分析了四种热带树木物种(Carapa guianensis,Eperua falcata,Symphonia globulifera和Virola michelii)的转录组,它们具有相反的生态特征,分别属于四个广泛的植物科(分别是Mel科,科,Cl科和肉豆蔻科)。我们使用454焦磷酸测序法对来自三个器官(叶,茎和根)的cDNA文库进行了测序。我们已经开发了一种基于R和基于bioperl的生物信息学程序,用于从头组装,基因功能注释和标记物发现。错配识别考虑了单碱基质量值以及作为重叠群深度和测序染色体数目的函数的错误变异的可能性。在17103(对于Symphonia globulifera)和23390(对于Eperua falcata)之间,已组装重叠群。它们明显表达的单基因数量各不相同,根部器官数量更多。物种间的基因表达模式相似,芳香族化合物的代谢被认为是基因功能的过度代表。发现与几种基因功能相对应的转录本在每个器官中的表达过多或不足。我们确定了4434(对于Symphonia globulifera)和9076(对于Virola surinamensis)良好支持的不匹配。所得的总错配密度在含变异体的重叠群中介于0.89(S. globulifera)和1.05(V. surinamensis)错配/ 100 bp之间。结论在四个转录组中基因功能的相对表示表明,次级代谢在热带树木中可能特别重要。组织中转录本的差异表示表明差异基因表达,这为这些非模式,具有生态学意义的物种的功能研究开辟了道路。我们在这四个物种中发现了大量错配。这些新发现的推定变体是为热带树种获取急需的基因组资源的第一步。

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