Adam Helene, Jouannic Stefan, Morcillo Fabienne, Verdeil Jean-Luc, Duval Yves, Tregear James W
IRD/CIRAD Palm Group, UMR 1098, Centre IRD Montpellier, BP 64501, 911 avenue Agropolis, 34394 Montpellier Cedex 5, France.
Ann Bot. 2007 Jul;100(1):1-12. doi: 10.1093/aob/mcm027. Epub 2007 Mar 13.
In this article a review is made of data recently obtained on the structural diversity and possible functions of MADS box genes in the determination of flower structure in the African oil palm (Elaeis guineensis). MADS box genes play a dominant role in the ABC model established to explain how floral organ identity is determined in model dicotyledon species such as Arabidopsis thaliana and Antirrhinum majus. In the monocotyledons, although there appears to be a broad general conservation of ABC gene functions, the model itself needs to be adapted in some cases, notably for certain species which produce flowers with sepals and petals of similar appearance. For the moment, ABC genes remain unstudied in a number of key monocot clades, so only a partial picture is available for the Liliopsida as a whole. The aim of this article is to summarize data recently obtained for the African oil palm Elaeis guineensis, a member of the family Arecaceae (Arecales), and to discuss their significance with respect to knowledge gained from other Angiosperm groups, particularly within the monocotyledons.
The essential details of reproductive development in oil palm are discussed and an overview is provided of the structural and functional characterization of MADS box genes likely to play a homeotic role in flower development in this species.
The structural and functional data provide evidence for a general conservation of the generic 'ABC' model in oil palm, rather than the 'modified ABC model' proposed for some other monocot species which produce homochlamydeous flowers (i.e. with morphologically similar organs in both perianth whorls), such as members of the Liliales. Our oil palm data therefore follow a similar pattern to those obtained for other Commelinid species in the orders Commelinales and Poales. The significance of these findings is discussed.
本文综述了最近获得的关于MADS盒基因在非洲油棕(Elaeis guineensis)花结构决定中的结构多样性和可能功能的数据。MADS盒基因在解释拟南芥和金鱼草等模式双子叶植物中花器官特性如何确定的ABC模型中起主导作用。在单子叶植物中,虽然ABC基因功能似乎有广泛的普遍保守性,但该模型本身在某些情况下需要调整,特别是对于某些产生花被片和花瓣外观相似的物种。目前,ABC基因在一些关键单子叶植物分支中仍未得到研究,因此对于整个百合纲来说,仅能获得部分情况。本文的目的是总结最近为非洲油棕(棕榈科(棕榈目)成员)获得的数据,并就从其他被子植物类群,特别是单子叶植物类群中获得的知识来讨论其意义。
讨论了油棕生殖发育的基本细节,并概述了可能在该物种花发育中起同源异型作用的MADS盒基因的结构和功能特征。
结构和功能数据为油棕中通用的“ABC”模型的普遍保守性提供了证据,而不是为一些其他产生同被花(即两轮花被中器官形态相似)的单子叶物种(如百合目成员)提出的“改良ABC模型”。因此,我们的油棕数据与从鸭跖草目和禾本目中其他鸭跖草类物种获得的数据遵循相似模式。讨论了这些发现的意义。