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Transcriptional analysis of tendril and inflorescence development in grapevine (Vitis vinifera L.)

机译:葡萄卷须和花序发育的转录分析(Vitis vinifera L.)

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摘要

In grapevine (Vitis vinifera L.), the lateral meristem can give rise to either tendrils or inflorescences which are determined organs. To get insights into the processes of tendril and inflorescence development, we characterized the transcriptional variation taking place in both organs. The results of the global transcriptional analyses along tendril and inflorescence development suggested that these two homologous organs initially share a common transcriptional program related to cell proliferation and growth functions. In later developmental stages they showed organ specific gene expression programs related to the particular differentiation processes taking place in each organ. In this way, tendrils showed higher transcription of genes related to photosynthesis, hormone signaling and secondary metabolism than inflorescences, while inflorescences displayed higher transcriptional activity for genes encoding transcription factors, mainly those belonging to the MADS-box gene family. The expression profiles of selected transcription factors related with inflorescence and flower meristem identity and with flower organogenesis were generally conserved with respect to their homologs in model species. Regarding tendrils, it was interesting to find that genes related with reproductive development in other species were also recruited for grapevine tendril development. These results suggest a role for those genes in the regulation of basic cellular mechanisms common to both developmental processes. Copyright: © 2014 Daz-Riquelme et al.
机译:在葡萄(Vitis vinifera L.)中,侧生分生组织可引起被确定为器官的卷须或花序。为了深入了解卷须和花序发育的过程,我们表征了两个器官中发生的转录变异。沿着卷须和花序发育的全球转录分析结果表明,这两个同源器官最初共享与细胞增殖和生长功能相关的通用转录程序。在以后的发展阶段,他们展示了与器官中发生的特定分化过程有关的器官特异性基因表达程序。这样,与花序相比,卷须显示出与光合作用,激素信号转导和次级代谢相关的基因更高的转录,而花序对于编码转录因子的基因(主要是属于MADS-box基因家族的那些)显示出更高的转录活性。与花序,花分生组织特性和花器官发生有关的选定转录因子的表达谱在模型物种中通常是保守的。关于卷须,有趣的是发现与其他物种生殖发育相关的基因也被招募到葡萄卷须发育中。这些结果表明这些基因在两个发育过程共有的基本细胞机制的调节中的作用。版权:©2014 Daz-Riquelme等。

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