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Global gene expression defines faded whorl specification of double flower domestication in Camellia

机译:全球基因表达定义了茶花双花驯化的褪色螺纹规格

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摘要

Double flowers in cultivated camellias are divergent in floral patterns which present a rich resource for demonstrating molecular modifications influenced by the human demands. Despite the key principle of ABCE model in whorl specification, the underlying mechanism of fine-tuning double flower formation remains largely unclear. Here a comprehensive comparative transcriptomics interrogation of gene expression among floral organs of wild type and “formal double” and “anemone double” is presented. Through a combination of transcriptome, small RNA and “degradome” sequencing, we studied the regulatory gene expression network underlying the double flower formation. We obtained the differentially expressed genes between whorls in wild and cultivated Camellia. We showed that the formation of double flowers tends to demolish gene expression canalization of key functions; the faded whorl specification mechanism was fundamental under the diverse patterns of double flowers. Furthermore, we identified conserved miRNA-targets regulations in the control of double flowers, and we found that miR172-AP2, miR156-SPLs were critical regulatory nodes contributing to the diversity of double flower forms. This work highlights the hierarchical patterning of global gene expression in floral development, and supports the roles of “faded ABC model” mechanism and miRNA-targets regulations underlying the double flower domestication.
机译:栽培山茶中的双花在花卉图案上有差异,这为展示受人类需求影响的分子修饰提供了丰富的资源。尽管ABCE模型在轮生规范中具有关键原理,但微调双花形成的基本机制仍不清楚。在这里,我们提出了一个综合的比较转录组学方法,对野生型和“正式双型”和“双雄激素型”花器官之间的基因表达进行询问。通过转录组,小RNA和“降解组”测序的组合,我们研究了双花形成背后的调控基因表达网络。我们获得了野生和栽培茶花的轮生之间差异表达的基因。我们发现重瓣花的形成往往会破坏关键功能的基因表达通道;在双花的不同模式下,褪色的螺纹指定机制是基本的。此外,我们确定了控制双花的保守miRNA-靶标调控,并且我们发现miR172-AP2,miR156-SPLs是促进双花形式多样性的关键调控节点。这项工作突出了花卉发育中全球基因表达的分层模式,并支持“淡化的ABC模型”机制和双花驯化背后的miRNA-靶标调控作用。

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