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Mining genes involved in the stratification of Paris Polyphylla seeds using high-throughput embryo Transcriptome sequencing

机译:使用高通量胚胎转录组测序技术挖掘巴黎Poly种子分层中涉及的基因

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Background Paris polyphylla var. yunnanensis is an important medicinal plant. Seed dormancy is one of the main factors restricting artificial cultivation. The molecular mechanisms of seed dormancy remain unclear, and little genomic or transcriptome data are available for this plant. Results In this study, massive parallel pyrosequencing on the Roche 454-GS FLX Titanium platform was used to generate a substantial sequence dataset for the P. polyphylla embryo. 369,496 high quality reads were obtained, ranging from 50 to 1146?bp, with a mean of 219?bp. These reads were assembled into 47,768 unigenes, which included 16,069 contigs and 31,699 singletons. Using BLASTX searches of public databases, 15,757 (32.3%) unique transcripts were identified. Gene Ontology and Cluster of Orthologous Groups of proteins annotations revealed that these transcripts were broadly representative of the P. polyphylla embryo transcriptome. The Kyoto Encyclopedia of Genes and Genomes assigned 5961 of the unique sequences to specific metabolic pathways. Relative expression levels analysis showed that eleven phytohormone-related genes and five other genes have different expression patterns in the embryo and endosperm in the seed stratification process. Conclusions Gene annotation and quantitative RT-PCR expression analysis identified 464 transcripts that may be involved in phytohormone catabolism and biosynthesis, hormone signal, seed dormancy, seed maturation, cell wall growth and circadian rhythms. In particular, the relative expression analysis of sixteen genes (CYP707A, NCED, GA20ox2, GA20ox3, ABI2, PP2C, ARP3, ARP7, IAAH, IAAS, BRRK, DRM, ELF1, ELF2, SFR6, and SUS) in embryo and endosperm and at two temperatures indicated that these related genes may be candidates for clarifying the molecular basis of seed dormancy in P. polyphlla var. yunnanensis.
机译:背景巴黎多叶植物。云南是重要的药用植物。种子休眠是限制人工栽培的主要因素之一。种子休眠的分子机制仍然不清楚,该植物的基因组或转录组数据很少。结果在这项研究中,使用Roche 454-GS FLX Titanium平台上的大量平行焦磷酸测序技术为多叶青杨胚胎生成了大量序列数据。获得369,496个高质量读段,范围从50到1146?bp,平均219?bp。这些读段被组装成47,768个单基因,其中包括16,069个重叠群和31,699个单例。使用公共数据库的BLASTX搜索,确定了15,757(32.3%)个唯一的成绩单。基因本体论和直系同源蛋白注释的簇揭示,这些转录本广泛地代表了P. polyphylla胚胎转录组。京都基因与基因组百科全书将5961的独特序列分配给特定的代谢途径。相对表达水平分析表明,在种子分层过程中,与植物激素相关的11个基因和其他5个基因在胚和胚乳中的表达方式不同。结论基因注释和定量RT-PCR表达分析鉴定了464种转录本,这些转录本可能与植物激素的分解代谢和生物合成,激素信号,种子休眠,种子成熟,细胞壁生长和昼夜节律有关。特别是在胚胎和胚乳以及胚乳中的16种基因(CYP707A,NCED,GA20ox2,GA20ox3,ABI2,PP2C,ARP3,ARP7,IAAH,IAAS,BRRK,DRM,ELF1,ELF2,SFR6和SUS)的相对表达分析两种温度表明这些相关基因可能是阐明多形P. polyphlla var种子休眠的分子基础的候选基因。云南

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