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凤仙花属植物中FIM同源物在花发育和逆转过程中的转录模式。

Transcription pattern of a FIM homologue in Impatiens during floral development and reversion.

作者信息

Pouteau S, Nicholls D, Tooke F, Coen E, Battey N

机构信息

Plant Science Laboratories, University of Reading, UK.

出版信息

Plant J. 1998 Apr;14(2):235-46. doi: 10.1046/j.1365-313x.1998.00114.x.

Abstract

Flowering and reversion in Impatiens are characterised by gradual transitions of organ identity and constitute a unique system for the molecular and physiological study of floral organogenesis. The authors have isolated an Impatiens homologue of the FIM gene of Antirrhinum (UFO in Arabidopsis), Imp-FIM, and analysed its expression in three states of the terminal meristem: vegetative, floral, and reverted. In floral meristems, Imp-FIM transcription is associated with petal identity, as in Antirrhinum and Arabidopsis, but this is achieved through a novel transcription pattern, characterised by a high level of transcript within petal primordia. This novel transcription pattern could contribute to the more diffuse boundaries between organ types in Impatiens. In vegetative meristems, Imp-FIM is expressed in the axils of leaf primordia which are arranged in a spiral. A similar pattern is observed in reverted meristems in which leaf primordia are initiated in a whorled arrangement. This result indicates that the maintenance of floral phyllotaxis is not associated with a specific pattern of Imp-FIM transcription. Transcription of Imp-FIM in a non-reverting line is no different from that in the reverting line. Therefore, the lack of floral commitment in the reverting line does not seem to be responsible for Imp-FIM transcription within petals. The novel transcription pattern in petals, together with features of Impatiens that are reminiscent of fim and ufo mutant phenotypes suggest an evolutionary divergence for Imp-FIM regulation in this species.

摘要

凤仙花的开花和返祖现象以器官特性的逐渐转变为特征,构成了一个用于花器官发生分子和生理研究的独特系统。作者分离出了金鱼草FIM基因(拟南芥中的UFO)的凤仙花同源基因Imp-FIM,并分析了其在顶端分生组织的三种状态下的表达:营养状态、花状态和返祖状态。在花分生组织中,与金鱼草和拟南芥一样,Imp-FIM转录与花瓣特性相关,但这是通过一种新的转录模式实现的,其特征是花瓣原基内转录本水平较高。这种新的转录模式可能导致凤仙花中器官类型之间的边界更加模糊。在营养分生组织中,Imp-FIM在呈螺旋状排列的叶原基腋部表达。在返祖分生组织中也观察到类似模式,其中叶原基以轮状排列起始。这一结果表明,花的叶序维持与Imp-FIM的特定转录模式无关。非返祖品系中Imp-FIM的转录与返祖品系中的转录没有差异。因此,返祖品系中缺乏花的决定作用似乎不是花瓣内Imp-FIM转录的原因。花瓣中的新转录模式,以及凤仙花中让人联想到fim和ufo突变体表型的特征,表明该物种中Imp-FIM调控存在进化分歧。

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