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拟南芥不对称叶片1基因的突变揭示了叶片和果实模式形成中的常见调控网络。

Common regulatory networks in leaf and fruit patterning revealed by mutations in the Arabidopsis ASYMMETRIC LEAVES1 gene.

作者信息

Alonso-Cantabrana Hugo, Ripoll Juan José, Ochando Isabel, Vera Antonio, Ferrándiz Cristina, Martínez-Laborda Antonio

机构信息

División de Genética, Universidad Miguel Hernández, Campus de San Juan, Ctra. de Valencia s/n, 03550-San Juan de Alicante, Spain.

出版信息

Development. 2007 Jul;134(14):2663-71. doi: 10.1242/dev.02864.

Abstract

Carpels and leaves are evolutionarily related organs, as the former are thought to be modified leaves. Therefore, developmental pathways that play crucial roles in patterning both organs are presumably conserved. In leaf primordia of Arabidopsis thaliana, the ASYMMETRIC LEAVES1 (AS1) gene interacts with AS2 to repress the class I KNOTTED1-like homeobox (KNOX) genes BREVIPEDICELLUS (BP), KNAT2 and KNAT6, restricting the expression of these genes to the meristem. In this report, we describe how AS1, presumably in collaboration with AS2, patterns the Arabidopsis gynoecium by repressing BP, which is expressed in the replum and valve margin, interacts in the replum with REPLUMLESS (RPL), an essential gene for replum development, and positively regulates the expression of this gene. Misexpression of BP in the gynoecium causes an increase in replum size, while the valve width is slightly reduced, and enhances the effect of mutations in FRUITFULL (FUL), a gene with an important function in valve development. Altogether, these findings strongly suggest that BP plays a crucial role in replum development. We propose a model for pattern formation along the mediolateral axis of the ovary, whereby three domains (replum, valve margin and valve) are specified by the opposing gradients of two antagonistic factors, valve factors and replum factors, the class I KNOX genes working as the latter.

摘要

心皮和叶子是在进化上相关的器官,因为前者被认为是经过修饰的叶子。因此,在这两种器官的模式形成中起关键作用的发育途径可能是保守的。在拟南芥的叶原基中,不对称叶1(AS1)基因与AS2相互作用,抑制I类同源异型盒基因(KNOX)短柄(BP)、KNOX家族蛋白2(KNAT2)和KNOX家族蛋白6(KNAT6),将这些基因的表达限制在分生组织中。在本报告中,我们描述了AS1可能与AS2协同作用,通过抑制在胎座框和瓣膜边缘表达的BP来调控拟南芥雌蕊的模式形成,BP在胎座框中与胎座缺失(RPL)相互作用,RPL是胎座发育的必需基因,并正向调控该基因的表达。在雌蕊中错误表达BP会导致胎座框大小增加,而瓣膜宽度略有减小,并增强了果实饱满(FUL)突变的影响,FUL是一个在瓣膜发育中具有重要功能的基因。总之,这些发现强烈表明BP在胎座发育中起关键作用。我们提出了一个沿子房中外侧轴的模式形成模型,其中三个区域(胎座框、瓣膜边缘和瓣膜)由两个拮抗因子——瓣膜因子和胎座框因子的相反梯度指定,I类KNOX基因作为后者起作用。

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