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Comparative transcriptomics among floral organs of the basal eudicot Eschscholzia californica as reference for floral evolutionary developmental studies.

机译:基底真双子叶植物(Eschscholzia californica)的花器官之间的比较转录组学,可作为花卉进化研究的参考。

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Background: Molecular genetic studies of floral development have concentrated on several core eudicots and grasses (monocots), which have canalized floral forms. Basal eudicots possess a wider range of floral morphologies than the core eudicots and grasses and can serve as an evolutionary link between core eudicots and monocots, and provide a reference for studies of other basal angiosperms. Recent advances in genomics have enabled researchers to profile gene activities during floral development, primarily in the eudicot Arabidopsis thaliana and the monocots rice and maize. However, our understanding of floral developmental processes among the basal eudicots remains limited. Results: Using a recently generated expressed sequence tag (EST) set, we have designed an oligonucleotide microarray for the basal eudicot Eschscholzia californica (California poppy). We performed microarray experiments with an interwoven-loop design in order to characterize the E. californica floral transcriptome and to identify differentially expressed genes in flower buds with pre-meiotic and meiotic cells, four floral organs at pre-anthesis stages (sepals, petals, stamens and carpels), developing fruits, and leaves. Conclusions: Our results provide a foundation for comparative gene expression studies between eudicots and basal angiosperms. We identified whorl-specific gene expression patterns in E. californica and examined the floral expression of several gene families. Interestingly, most E. californica homologs of Arabidopsis genes important for flower development, except for genes encoding MADS-box transcription factors, show different expression patterns between the two species. Our comparative transcriptomics study highlights the unique evolutionary position of E. californica compared with basal angiosperms and core eudicots.Digital Object Identifier http://dx.doi.org/10.1186/gb-2010-11-10-r101
机译:背景:关于花卉发育的分子遗传学研究集中在几种核心的双子叶植物和草(单子叶植物)上,它们具有渠化的花卉形式。基底双子叶植物比核心双子叶植物和草具有更广泛的花形形态,并可作为核心双子叶植物和单子叶植物之间的进化联系,并为其他基础被子植物的研究提供参考。基因组学的最新进展使研究人员能够描述花卉发育过程中的基因活性,主要是在杜鹃花(Audidopsis thaliana)和单子叶植物的稻米和玉米中。然而,我们对基底双子叶植物中花发育过程的理解仍然有限。结果:使用最近生成的表达序列标签(EST)集,我们为基底真双子叶植物(Eschscholzia californica)(California poppy)设计了寡核苷酸微阵列。我们用交织环设计进行了微阵列实验,以表征 E。加利福尼亚州花的转录组,并鉴定具有减数分裂前和减数分裂细胞,花期前的四个花器官(花萼,花瓣,雄蕊和心皮),发育中的果实和叶片的花芽中差异表达的基因。结论:我们的研究结果为双子叶植物和被子植物的基础基因表达研究提供了基础。我们在 E中确定了特定于螺纹的基因表达模式。 californica 并检查了几个基因家族的花表达。有趣的是,大多数 E。除编码MADS-box转录因子的基因外,对花卉发育很重要的拟南芥基因的加州同系同源物在两个物种之间表现出不同的表达方式。我们的比较转录组学研究突出了 E的独特进化地位。加利福尼亚州与基础被子植物和核心双子叶植物比较。数字对象标识符http://dx.doi.org/10.1186/gb-2010-11-10-r10​​1

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