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功能形态的转移赋予了鹤望兰花序器官的身份。

Transference of function shapes organ identity in the dove tree inflorescence.

机构信息

Department of Biology, Katholieke Universiteit Leuven (K.U.Leuven), Kasteelpark Arenberg 31, 3001 Leuven, Belgium.

VIB Department of Plant Systems Biology, Universiteit Gent (UGent), Technologiepark 927, 9052 Gent, Belgium.

出版信息

New Phytol. 2012 Jan;193(1):216-228. doi: 10.1111/j.1469-8137.2011.03915.x. Epub 2011 Oct 12.

Abstract

• An important evolutionary mechanism shaping the biodiversity of flowering plants is the transfer of function from one plant organ to another. To investigate whether and how transference of function is associated with the remodeling of the floral organ identity program we studied Davidia involucrata, a species with conspicuous, petaloid bracts subtending a contracted inflorescence with reduced flowers. • A detailed ontogeny enabled the interpretation of expression patterns of B-, C- and E-class homeotic MADS-box genes using qRT-PCR and in situ hybridization techniques. We investigated protein-protein interactions using yeast two-hybrid assays. • Although loss of organs does not appear to have affected organ identity in the retained organs of the reduced flowers of D. involucrata, the bracts express the B-class TM6 (Tomato MADS box gene 6) and GLOBOSA homologs, but not DEFICIENS, and the C-class AGAMOUS homolog, representing a subset of genes also involved in stamen identity. • Our results may illustrate how petal identity can be partially transferred outside the flower by expressing a subset of stamen identity genes. This adds to the molecular mechanisms explaining the diversity of plant reproductive morphology.

摘要

• 一种重要的进化机制塑造了开花植物的生物多样性,即功能从一个植物器官转移到另一个植物器官。为了研究功能转移是否以及如何与花器官身份程序的重塑相关,我们研究了珙桐,一种具有明显花瓣状苞片的物种,苞片支撑着一个收缩的花序,花的数量减少。• 通过详细的个体发生,我们使用 qRT-PCR 和原位杂交技术解释了 B、C 和 E 类同源异型 MADS 盒基因的表达模式。我们使用酵母双杂交试验研究了蛋白质-蛋白质相互作用。• 尽管器官的缺失似乎并没有影响到保留的减少花的器官的器官身份,但苞片表达 B 类 TM6(番茄 MADS 盒基因 6)和 GLOBOSA 同源物,但不表达 DEFICIENS,以及 C 类 AGAMOUS 同源物,代表了一组也参与雄蕊身份的基因。• 我们的结果可能说明了如何通过表达一组雄蕊身份基因,将花瓣身份部分转移到花外。这增加了解释植物生殖形态多样性的分子机制。

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