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首页> 外文期刊>BMC Genomics >Comparative transcriptomics of early petal development across four diverse species of Aquilegia reveal few genes consistently associated with nectar spur development
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Comparative transcriptomics of early petal development across four diverse species of Aquilegia reveal few genes consistently associated with nectar spur development

机译:四个不同种类的Aquilegia的花瓣早期发育的转录组学研究显示,很少有与花蜜刺生长相关的基因

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Petal nectar spurs, which facilitate pollination through animal attraction and pollen placement, represent a key innovation promoting diversification in the genus Aquilegia (Ranunculaceae). Identifying the genetic components that contribute to the development of these three-dimensional structures will inform our understanding of the number and types of genetic changes that are involved in the evolution of novel traits. In a prior study, gene expression between two regions of developing petals, the laminar blade and the spur cup, was compared at two developmental stages in the horticultural variety A. coerulea ‘Origami’. Several hundred genes were differentially expressed (DE) between the blade and spur at both developmental stages. In order to narrow in on a set of genes crucial to early spur formation, the current study uses RNA sequencing (RNAseq) to conduct comparative expression analyses of petals from five developmental stages between four Aquilegia species, three with morphologically variable nectar spurs, A. sibirica, A. formosa, and A. chrysantha, and one that lacks nectar spurs, A. ecalcarata. Petal morphology differed increasingly between taxa across the developmental stages assessed, with petals from all four taxa being indistinguishable pre-spur formation at developmental stage 1 (DS1) and highly differentiated by developmental stage 5 (DS5). In all four taxa, genes involved in mitosis were down-regulated over the course of the assessed developmental stages, however, many genes involved in mitotic processes remained expressed at higher levels later in development in the spurred taxa. A total of 690 genes were identified that were consistently DE between the spurred taxa and A. ecalcarata at all five developmental stages. By comparing these genes with those identified as DE between spur and blade tissue in A. coerulea ‘Origami’, a set of only 35 genes was identified that shows consistent DE between petal samples containing spur tissue versus those without spur tissue. The results of this study suggest that expression differences in very few loci are associated with the presence and absence of spurs. In general, it appears that the spurless petals of A. ecalcarata cease cell divisions and enter the cell differentiation phase at an earlier developmental time point than those that produce spurs. This much more tractable list of 35 candidates genes will greatly facilitate targeted functional studies to assess the genetic control and evolution of petal spurs in Aquilegia.
机译:花瓣花蜜马刺,通过吸引动物和花粉放置促进授粉,是一项关键创新,可促进A藜属(毛an科)的多样化。确定有助于这些三维结构发展的遗传成分,将有助于我们理解与新性状进化有关的遗传变化的数量和类型。在先前的研究中,在园艺品种A. coerulea'Origami'的两个发育阶段中,比较了发育中的花瓣的两个区域(层状叶片和直齿杯)之间的基因表达。在两个发育阶段,叶片和骨刺之间有数百个基因差异表达(DE)。为了缩小对早期骨刺形成至关重要的一组基因,当前的研究使用RNA测序(RNAseq)对四个Aquilegia物种(其中三个具有形态学可变的花蜜刺)A的五个发育阶段的花瓣进行比较表达分析。 sibirica,A。formosa和A. chrysantha,以及缺少花蜜马刺的a。ecalcarata。在所评估的整个发育阶段中,各分类单元之间的花瓣形态差异越来越大,所有四个分类单元的花瓣在发育阶段1(DS1)都无法区分,并且在发育阶段5(DS5)上具有高度差异。在所有四个类群中,参与有丝分裂的基因在评估的发育阶段均被下调,但是,许多有丝分裂过程中涉及的基因在以后的刺激下仍以较高的水平表达。在所有五个发育阶段中,共鉴定了690个基因,这些基因在受激发的类群和e。acalcarata之间始终一致。通过将这些基因与蓝藻“折纸”中正齿和叶片组织之间的DE进行比较,鉴定出一组只有35个基因,这些基因显示了包含正齿组织的花瓣样品与不具有正齿组织的花瓣样品之间的DE一致。这项研究的结果表明,很少有基因座的表达差异与马刺的存在与否有关。总的来说,似乎无骨草的无刺花瓣在产生发育的时间点比产生刺的那些早停止细胞分裂并进入细胞分化阶段。这个35个候选基因的更易处理的列表将极大地促进目标功能研究,以评估Aquilegia花瓣刺的遗传控制和进化。

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