禾本科花发育的分子研究。

Sexual Plant Reproduction Pub Date : 2011-12-01 Epub Date: 2011-08-30 DOI:10.1007/s00497-011-0175-y
Mario Ciaffi, Anna Rita Paolacci, Oronzo Antonio Tanzarella, Enrico Porceddu
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引用次数: 64

摘要

单子叶植物禾本科约有10000种,是被子植物中最重要的分类群之一。它们的花形态与其他单子叶植物和高等双子叶植物明显不同。禾本科植物独特的花结构是小花,像雌蕊一样含有心皮和雄蕊,但没有花瓣和萼片。生殖器官被两个小叶和一个外稃所包围,这两个小叶和外稃与花瓣相对应,它们与花瓣的对应关系仍然存在争议。通过对花形态发生和器官特征的分子和遗传分析,建立了ABCDE花发育模型。禾本科花发育所需的几个基因分别对应于花序的A、B、C、D和E类基因,但其他基因似乎具有独特而多样的功能。本文基于对水稻、玉米和小麦的研究,概述了目前禾本科植物编码mikc型MADS-box转录因子基因的进化和多样化。此外,本文还综述了近年来有关花发育调控基因的研究进展,以及这些基因在禾本科和菊科植物之间的结构和功能保护程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular aspects of flower development in grasses.

The grass family (Poaceae) of the monocotyledons includes about 10,000 species and represents one of the most important taxa among angiosperms. Their flower morphology is remarkably different from those of other monocotyledons and higher eudicots. The peculiar floral structure of grasses is the floret, which contains carpels and stamens, like eudicots, but lacks petals and sepals. The reproductive organs are surrounded by two lodicules, which correspond to eudicot petals, and by a palea and lemma, whose correspondence to eudicot organs remains controversial. The molecular and genetic analysis of floral morphogenesis and organ specification, primarily performed in eudicot model species, led to the ABCDE model of flower development. Several genes required for floral development in grasses correspond to class A, B, C, D, and E genes of eudicots, but others appear to have unique and diversified functions. In this paper, we outline the present knowledge on the evolution and diversification of grass genes encoding MIKC-type MADS-box transcription factors, based on information derived from studies in rice, maize, and wheat. Moreover, we review recent advances in studying the genes involved in the control of flower development and the extent of structural and functional conservation of these genes between grasses and eudicots.

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Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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