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LEAFY与花同源异型基因相互作用以调控拟南芥花的发育。

LEAFY Interacts with Floral Homeotic Genes to Regulate Arabidopsis Floral Development.

作者信息

Huala E., Sussex I. M.

机构信息

Department of Plant Biology, University of California, Berkeley, California 94720.

出版信息

Plant Cell. 1992 Aug;4(8):901-913. doi: 10.1105/tpc.4.8.901.

Abstract

In the leafy mutant of Arabidopsis, most of the lateral meristems that are fated to develop as flowers in a wild-type plant develop as inflorescence branches, whereas a few develop as abnormal flowers consisting of whorls of sepals and carpels. We have isolated several new alleles of leafy and constructed a series of double mutants with leafy and other homeotic mutants affecting floral development to determine how these genes interact to specify the developmental fate of lateral meristems. We found that leafy is completely epistatic to pistillata and interacts additively with agamous in early floral whorls, whereas in later whorls leafy is epistatic to agamous. Double mutants with leafy and either apetala1 or apetala2 showed a complete loss of the whorled phyllotaxy, shortened internodes, and suppression of axillary buds typical of flowers. Our results suggest that the products of LEAFY, APETALA1, and APETALA2 together control the differentiation of lateral meristems as flowers rather than as inflorescence branches.

摘要

在拟南芥的多叶突变体中,大多数在野生型植株中注定发育为花的侧生分生组织发育为花序枝,而少数则发育为由萼片和心皮轮组成的异常花。我们分离出了几个新的多叶等位基因,并构建了一系列多叶与其他影响花发育的同源异型突变体的双突变体,以确定这些基因如何相互作用来决定侧生分生组织的发育命运。我们发现,多叶在早期花轮中对矮牵牛完全是上位性的,并且与无配子生殖呈累加相互作用,而在后期花轮中,多叶对无配子生殖是上位性的。多叶与花瓣1或花瓣2的双突变体表现出轮状叶序完全丧失、节间缩短以及典型花的腋芽受抑制。我们的结果表明,多叶、花瓣1和花瓣2的产物共同控制侧生分生组织分化为花而不是花序枝。

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