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An RNA-Seq-based reference transcriptome for Citrus

机译:基于RNA-SEQ的柑橘参考转录组

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Previous RNA-Seq studies in citrus have been focused on physiological processes relevant to fruit quality and productivity of the major species, especially sweet orange. Less attention has been paid to vegetative or reproductive tissues, while most Citrus species have never been analysed. In this work, we characterized the transcriptome of vegetative and reproductive tissues from 12 Citrus species from all main phylogenetic groups. Our aims were to acquire a complete view of the citrus transcriptome landscape, to improve previous functional annotations and to obtain genetic markers associated with genes of agronomic interest. 28 samples were used for RNA-Seq analysis, obtained from 12 Citrus species: C.medica, C.aurantifolia, C.limon, C.bergamia, C.clementina, C.deliciosa, C.reshni, C.maxima, C.paradisi, C.aurantium, C.sinensis and Poncirus trifoliata. Four different organs were analysed: root, phloem, leaf and flower. A total of 3421 million Illumina reads were produced and mapped against the reference C.clementina genome sequence. Transcript discovery pipeline revealed 3326 new genes, the number of genes with alternative splicing was increased to 19739, and a total of 73797 transcripts were identified. Differential expression studies between the four tissues showed that gene expression is overall related to the physiological function of the specific organs above any other variable. Variants discovery analysis revealed the presence of indels and SNPs in genes associated with fruit quality and productivity. Pivotal pathways in citrus such as those of flavonoids, flavonols, ethylene and auxin were also analysed in detail.
机译:以前的RNA-SEQ在柑橘中的研究一直专注于与主要物种的水果质量和生产力相关的生理过程,特别是甜橙色。对植物或生殖组织的报酬不太关注,而大多数柑橘种类从未分析过。在这项工作中,我们从所有主要系统发育基团的12种柑橘类别表征了营养和生殖组织的转录组。我们的目标是获得柑橘转录ome景观的完全看法,以改善以前的功能性注释,并获得与农艺兴趣基因相关的遗传标志。 28个样品用于RNA-SEQ分析,从12个柑橘类别中获得:C.Medica,C.Aurantifolia,C.Limon,C.bergamia,C.Clementina,C.deliciosa,C.Reshni,C.Maxima,C. Paradisi,C.aurantium,C.sinensis和Poncirus Trifoliata。分析了四种不同的器官:根,韧皮,叶和花。共产生34.21亿illumina读取并映射到参考C.clementina基因组序列。转录物发现管道揭示了3326个新基因,具有替代剪接的基因数量增加至19739年,鉴定了总共73797种转录物。四种组织之间的差异表达研究表明基因表达与任何其他可变的特定器官的生理功能有关。变体发现分析显示出与水果质量和生产率相关的基因中的诱导和SNP的存在。还详细分析了柑橘中诸如黄酮类化合物,黄酮醇,乙烯和植物蛋白的枢轴途径。

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