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拟南芥早期胚珠发育过程中的模式形成。

Pattern formation during early ovule development in Arabidopsis thaliana.

作者信息

Sieber Patrick, Gheyselinck Jacqueline, Gross-Hardt Rita, Laux Thomas, Grossniklaus Ueli, Schneitz Kay

机构信息

Institute of Plant Biology and Zürich Basel Plant Science Centre, University of Zürich, Zollikerstrasse 107, Zürich 8008, Switzerland.

出版信息

Dev Biol. 2004 Sep 15;273(2):321-34. doi: 10.1016/j.ydbio.2004.05.037.

Abstract

Ovules of higher plants are the precursors of seeds. Ovules emerge from placental tissue inside the gynoecium of flowers. Three elements, funiculus, chalaza, and nucellus, can be distinguished along the proximal-distal axis of the outgrowing radially symmetrical ovule primordium. The asymmetric initiation of the outer integument marks the switch to adaxial-abaxial development, which leads to the formation of a bilaterally symmetrical ovule. The putative transcriptional regulator NOZZLE (NZZ) plays a role in mediating this transition by controlling the timing of expression of the putative transcriptional regulator INNER NO OUTER (INO) in an abaxial domain of the chalaza, from where the outer integument initiates. Integument formation depends on the homeobox gene WUSCHEL (WUS), which is expressed in the nucellus and is sufficient to induce integuments non-cell autonomously from a region adjacent to its expression domain. In this study, we describe the expression pattern of the homeobox-leucine zipper gene PHABULOSA (PHB) during ovule development, demonstrating that adaxial-abaxial polarity is established from the very beginning of ovule development. Furthermore, we examined the expression pattern of PHB, INO, and WUS in ovules of plants, which are affected in integument initiation and thus defective in the transition from proximal-distal to adaxial-abaxial development. We found that NZZ is required to restrict PHB expression to the distal chalaza, from where the inner integument initiates. PHB expression is not established in the distal chalaza of two mutants, aintegumenta (ant) and wus, which fail to form integuments. Furthermore, we suggest that one mechanism by which WUS controls integument formation is by establishing the chalaza and that outer and inner integument identity determination depends on additional region-specific factors. In addition, we present evidence that NZZ is essential for the normal nucellar expression pattern of WUS. Thus, both WUS and PHB affect processes downstream of NZZ action during the transition from proximal--distal to adaxial--abaxial ovule development.

摘要

高等植物的胚珠是种子的前身。胚珠从花的雌蕊内的胎座组织中产生。沿着向外生长的辐射对称胚珠原基的近端-远端轴,可以区分出三个部分:珠柄、合点和珠心。外珠被的不对称起始标志着向近轴-远轴发育的转变,这导致了两侧对称胚珠的形成。假定的转录调节因子NOZZLE(NZZ)通过控制假定的转录调节因子INNER NO OUTER(INO)在合点远轴区域的表达时间来介导这种转变,外珠被从该区域起始。珠被的形成依赖于同源异型框基因WUSCHEL(WUS),该基因在珠心中表达,并且足以从与其表达域相邻的区域非细胞自主地诱导珠被形成。在本研究中,我们描述了同源异型框-亮氨酸拉链基因PHABULOSA(PHB)在胚珠发育过程中的表达模式,表明近轴-远轴极性从胚珠发育的一开始就建立了。此外,我们研究了PHB、INO和WUS在胚珠起始受影响且因此在从近端-远端发育向近轴-远轴发育转变中存在缺陷的植物胚珠中的表达模式。我们发现NZZ是将PHB表达限制在合点远端所必需的,内珠被从该区域起始。在两个不能形成珠被的突变体,即无珠被(ant)和wus中,PHB在合点远端没有建立表达。此外,我们认为WUS控制珠被形成的一种机制是通过建立合点,并且外珠被和内珠被身份的确定取决于其他区域特异性因子。此外,我们提供证据表明NZZ对于WUS在珠心中的正常表达模式至关重要。因此,在从近端-远端向近轴-远轴胚珠发育的转变过程中,WUS和PHB都影响NZZ作用下游的过程。

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