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金鱼草的花对称性与形状。

Flower symmetry and shape in Antirrhinum.

作者信息

Almeida Jorge, Galego Lisete

机构信息

Instituto Superior de Agronomia (ISA), Lisboa, Portugal.

出版信息

Int J Dev Biol. 2005;49(5-6):527-37. doi: 10.1387/ijdb.041967ja.

Abstract

According to their symmetry, flowers are classified as radially symmetrical or bilaterally symmetrical. Bilateral symmetry, which is thought to have evolved from radial symmetry, results from establishment of asymmetry relative to a dorsoventral axis of flowers. Here we consider developmental genetic mechanisms underlying the generation of this asymmetry and how they relate to controls of petal shape and growth in Antirrhinum. Two genes, CYC and DICH, are expressed in dorsal domains of the Antirrhinum flower and determine its overall dorsoventral asymmetry and the asymmetries and shapes of individual floral organs, by influencing regional growth. Another gene, DIV, influences regional asymmetries and shapes in ventral regions of the flower through a quantitative effect on growth. However, DIV is not involved in determining the overall dorsoventral asymmetry of the flower and its effects on regional asymmetries depend on interactions with CYC/DICH. These interactions illustrate how gene activity, symmetry, shape and growth may be related.

摘要

根据对称性,花可分为辐射对称或两侧对称。两侧对称被认为是从辐射对称进化而来的,它是相对于花的背腹轴建立不对称性的结果。在这里,我们考虑这种不对称性产生的发育遗传机制,以及它们如何与金鱼草花瓣形状和生长的控制相关。两个基因CYC和DICH在金鱼草花的背部区域表达,并通过影响区域生长来决定其整体背腹不对称性以及各个花器官的不对称性和形状。另一个基因DIV通过对生长的定量影响来影响花腹侧区域的区域不对称性和形状。然而,DIV不参与决定花的整体背腹不对称性,其对区域不对称性的影响取决于与CYC/DICH的相互作用。这些相互作用说明了基因活性、对称性、形状和生长之间可能存在的关系。

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