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首页> 外文期刊>The Horticulture Journal >Molecular Mechanism Regulating Floral Architecture in Monocotyledonous Ornamental Plants
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Molecular Mechanism Regulating Floral Architecture in Monocotyledonous Ornamental Plants

机译:调控单子叶观赏植物花卉构筑的分子机制

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Molecular and genetic analyses of flower development have been conducted primarily in dicot model plants such as Arabidopsis thaliana and Antirrhinum majus. The obtained data are the basis for the ABC model, which was extended to the ABCE model of floral development. This model has been validated in many dicot species using genetic transformation studies and mutant analyses. Many dicot flowers have two distinctive perianth whorls, which include greenish sepals and showy petals. By contrast, the monocot lily flower has two almost identical petaloid whorls, the inner and outer tepals. To explain this type of floral morphology, a modified ABC model, the further extended modified ABCE model, was proposed. According to this model, B-class genes are expressed in whorls 1-3, and whorls 1 and 2 form petaloid structures. This review describes the molecular mechanisms regulating flower development in monocots. Since the showy perianth is one of the most important traits in floricultural crops, we focused on the B- and C-class genes, which are related to the development and modification of the perianth. The review describes the expression patterns of floral organ identity genes, and presents functional studies using double-flowered and viridiflora cultivars in some monocot species. Besides lily-type flowers, there are several types of monocot flower, such as commelina type with two whorls of distinctive perianth, orchid and grass flowers. The review also describes the molecular analyses of these types of monocot flower.
机译:花朵发育的分子和遗传分析主要在双子叶植物模型植物中进行,例如拟南芥和Antirrhinum majus。获得的数据是ABC模型的基础,该模型已扩展到ABCE花卉发育模型。使用遗传转化研究和突变分析已在许多双子叶植物物种中验证了该模型。许多双子叶植物的花都有两个独特的花被轮,包括绿色的萼片和艳丽的花瓣。相比之下,单子叶植物的百合花具有两个几乎相同的花瓣状轮叶,内部和外部花被。为了解释这种类型的花卉形态,提出了一种改进的ABC模型,即进一步扩展的改进的ABCE模型。根据该模型,B类基因在1-3轮中表达,而1和2轮形成花瓣状结构。这篇综述描述了调节单子叶植物花发育的分子机制。由于艳丽的花被是花艺作物中最重要的性状之一,因此我们将重点放在B和C类基因上,这些基因与花被的发育和修饰有关。这篇综述描述了花器官同一性基因的表达模式,并提出了在某些单子叶植物物种中使用重花和viridiflora品种的功能研究。除百合型花外,还有多种类型的单子叶植物花,例如具有两个独特花被轮缘的兰花花,兰花和草花。该评价还描述了这些类型的单子叶植物花的分子分析。

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