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非洲菊花瓣器官发生的转录分析

Transcriptional analysis of petal organogenesis in Gerbera hybrida.

作者信息

Laitinen Roosa A E, Pöllänen Eija, Teeri Teemu H, Elomaa Paula, Kotilainen Mika

机构信息

Department of Applied Biology, University of Helsinki, P.O.Box 27, 00014 Helsinki, Finland.

出版信息

Planta. 2007 Jul;226(2):347-60. doi: 10.1007/s00425-007-0486-2. Epub 2007 Mar 2.

Abstract

Understanding of the molecular interplay, which determines early steps of flower formation has grown considerably during last years. In contrast, genetic actions responsible for how flower organs acquire their size and shape at later phases of organogenesis are still poorly understood. We have exploited the large and anatomically simple Gerbera (Gerbera hybrida var. Terra regina) ray flower petals to describe transcriptional changes during organogenesis. Gerbera 9 K cDNA microarray was utilized to profile gene expression at six different developmental stages of petal organogenesis, at the earliest stage expansion of petals is starting and at the latest stage petals have reached their final size and shape. Genes potentially participating in petal opening were identified based on the similarity in expression with a known marker gene. Our results showed characteristic sets of genes expressed during the cell division and cell expansion phases of petal development. Interestingly, there was a transition stage during which neither cell division nor cell expansion marker genes were abundantly expressed. Moreover, constitutive expression of late petal specific genes indicates that they participate in petal organogenesis throughout the development and they are not involved in stage specific switch points.

摘要

近年来,对于决定花形成早期步骤的分子相互作用的理解有了显著进展。相比之下,关于花器官在器官发生后期如何获得其大小和形状的遗传作用仍知之甚少。我们利用了大丽花(Gerbera hybrida var. Terra regina)舌状花花冠的花瓣,其体积大且解剖结构简单,来描述器官发生过程中的转录变化。利用大丽花9K cDNA微阵列对花瓣器官发生的六个不同发育阶段的基因表达进行分析,最早阶段花瓣开始伸展,最晚阶段花瓣达到最终大小和形状。基于与已知标记基因表达的相似性,鉴定出可能参与花瓣开放的基因。我们的结果显示了在花瓣发育的细胞分裂和细胞扩张阶段表达的特征性基因集。有趣的是,存在一个过渡阶段,在此期间细胞分裂标记基因和细胞扩张标记基因均未大量表达。此外,花瓣晚期特异性基因的组成型表达表明它们在整个发育过程中都参与花瓣器官发生,且不涉及阶段特异性转换点。

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