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花被片花瓣状器官的演化独立于 B 类 MADS 框基因表达的转变。

Evolution of petaloid sepals independent of shifts in B-class MADS box gene expression.

机构信息

Department of Ecology and Evolutionary Biology, University of Kansas, 1200 Sunnyside Avenue, Lawrence, KS 66045, USA.

出版信息

Dev Genes Evol. 2012 Mar;222(1):19-28. doi: 10.1007/s00427-011-0385-1. Epub 2011 Dec 24.

Abstract

Attractive petals are an integral component of animal-pollinated flowers and in many flowering plant species are restricted to the second floral whorl. Interestingly, multiple times during angiosperm evolution, petaloid characteristics have expanded to adjacent floral whorls or to extra-floral organs. Here, we investigate developmental characteristics of petaloid sepals in Rhodochiton atrosanguineum, a close relative of the model species Antirrhinum majus (snapdragon). We undertook this in two ways, first using scanning electron microscopy we investigate the micromorphology of petals and sepals, followed by expression studies of genes usually responsible for the formation of petaloid structures. From our data, we conclude that R. atrosanguineum petaloid sepals lack micromorphological characteristics of petals and that petaloid sepals did not evolve through regulatory evolution of B-class MADS box genes, which have been shown to specify second whorl petal identity in a number of model flowering plant species including snapdragon. These data, in conjunction with other studies, suggests multiple convergent pathways for the evolution of showy sepals.

摘要

有吸引力的花瓣是动物授粉花的一个组成部分,在许多开花植物物种中,它们仅限于第二花轮。有趣的是,在被子植物进化过程中,多次出现花瓣特征扩展到相邻的花轮或额外的花器官。在这里,我们研究了 Rhodochiton atrosanguineum 中花瓣状萼片的发育特征,这是模式物种 Antirrhinum majus(金鱼草)的近亲。我们通过两种方式进行了研究,首先使用扫描电子显微镜研究花瓣和萼片的微观形态,然后研究通常负责形成花瓣状结构的基因的表达。根据我们的数据,我们得出结论,R. atrosanguineum 花瓣状萼片缺乏花瓣的微观形态特征,并且花瓣状萼片不是通过 B 类 MADS 框基因的调控进化而来的,B 类 MADS 框基因已经在包括金鱼草在内的一些模式开花植物物种中被证明指定第二花轮花瓣的身份。这些数据与其他研究一起表明,有多种趋同途径可以进化出艳丽的萼片。

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