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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Construction and de novo characterization of a transcriptome of Chrysanthemum lavandulifolium: analysis of gene expression patterns in floral bud emergence
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Construction and de novo characterization of a transcriptome of Chrysanthemum lavandulifolium: analysis of gene expression patterns in floral bud emergence

机译:薰衣草菊花转录组的构建和从头表征:花芽萌发中基因表达模式的分析

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Chrysanthemum is one of the most important commercially used floral crops. The flowering feature of chrysanthemum has considerable ecological and cultural value; however, it's flowering mechanisms has not been well characterized to date because of a lack of genomic information. In this study, we firstly present extensive sequence and transcript abundance data for the transcriptome of a key chrysanthemum-related species, Chrysanthemum lavandulifolium (Fisch. ex Trautv), which was obtained using Illumina HiSeq (TM) 2000 sequencing platform. There were 108,737 high quality unigenes that were assembled based on 4 GB sequencing data, of which 58,093 were annotated by a similarity search with known proteins (E-value < 1.00E-5). In total, 211 flowering-related unigenes were identified from the transcriptome of C. lavandulifolium. Furthermore, the upgraded version of the digital genes expression analysis identified 14,406 unigenes that showed significantly different expression levels between the seedling stage and the visible bud stage. Many unigenes with high similarity to important genes that are involved in the photoperiod, gibberellin, vernalization, and autonomous pathways were identified, such as CONSTANS (CO), FLOWERING LOCUS T (FT), SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1(SOC1) and FLOWERING LOCUS C (FLC). Furthermore, many more transcription factor genes, including MIKC-type, SBP and YABBY, which are specifically expressed in the visible bud stage of C. lavandulifolium, were identified for the first time. This study represents the first exploration of the C. lavandulifolium transcriptome, and these results will not only provide novel insights into the molecular mechanism of the flowering of C. lavandulifolium but can also facilitate molecular breeding in chrysanthemums.
机译:菊花是最重要的商业花卉植物之一。菊花的开花特性具有相当的生态和文化价值。然而,由于缺乏基因组信息,其开花机制迄今尚未得到很好的表征。在这项研究中,我们首先提供了一个关键的菊花相关物种,即薰衣草菊花(Fisch。ex Trautv)的转录组的大量序列和转录本丰度数据,该数据是使用Illumina HiSeq(TM)2000测序平台获得的。基于4 GB的测序数据,组装了108,737个高质量的单基因,其中58,093个通过与已知蛋白质的相似性搜索标注(E值<1.00E-5)。总共,从薰衣草的转录组中鉴定出211个与开花相关的单基因。此外,数字基因表达分析的升级版确定了14,406个单基因,这些单基因在苗期和可见芽期之间显示出明显不同的表达水平。鉴定出许多与光周期,赤霉素,春化和自主途径有关的重要基因具有高度相似性的单基因,例如CONSTANS(CO),FLOWERING LOCUS T(FT),CONSTANS 1过表达抑制剂(SOC1)和FLOWERING LOCUS C(FLC)。此外,首次鉴定出了更多的转录因子基因,包括MIKC型,SBP和YABBY,它们在淡紫色梭菌的可见芽阶段中特异性表达。这项研究代表了薰衣草转录组的首次探索,这些结果不仅将为薰衣草开花的分子机制提供新颖的见解,而且还可以促进菊花的分子育种。

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