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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Apical displacement1 gene regulates apical-basal pattern formation in rice embryo
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Apical displacement1 gene regulates apical-basal pattern formation in rice embryo

机译:顶芽置换1基因调节水稻胚芽顶基模式的形成

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摘要

We analyzed an embryo mutant apical displacement1 (apd1) that formed an underdeveloped shoot at the apex of the embryo and one or two radicles in the enlarged basal region. At the early embryonic stage, apd1 initiated shoot and radicle in almost normal positions. However, in later stages, reduction of the apical region and enlargement of the basal region became gradually more pronounced. Consequently, a shoot and a radicle were shifted toward the apical position; the second radicle was formed below the first one. The apd1 plant showed pleiotropic phenotypes in shoots and roots: many tillers, narrow leaves, short roots and small inflorescences. In shl1-2 apd1 double mutant, a shoot was deleted, as in shl1-2. In addition, the number of radicles was more than that of apd1. This result suggests that APD1 and SHL1 function redundantly in the regulation of basal region size. Taken together, these results suggest that APD1 gene regulates the development of shoot and the regionalization along apical-basal axis. Moreover, we infer that in rice embryogenesis, sizes of apical and basal regions are under compensatory regulation. (c) 2005 Elsevier Ireland Ltd. All rights reserved.
机译:我们分析了一个胚胎突变体顶端置换1(apd1),它在胚胎的顶端形成了一个不发达的芽,并在扩大的基底区域形成了一个或两个胚根。在胚胎早期,apd1在几乎正常的位置启动芽和胚根。然而,在以后的阶段中,根尖区域的减少和基底区域的扩大逐渐变得更加明显。因此,芽和胚根向顶端位置移动。第二个胚根在第一个胚根下方形成。 apd1植物在茎和根中表现出多效性表型:分till多,叶窄,根短和小花序。在shl1-2 apd1双突变体中,与shl1-2一样,删除了芽。另外,胚根的数量大于apd1。该结果表明,APD1和SHL1在基底区域大小的调节中起冗余作用。综上所述,这些结果表明APD1基因调节芽的发育和沿顶基轴的区域化。此外,我们推断在水稻胚胎发生中,顶端和基部区域的大小处于补偿性调节之下。 (c)2005 Elsevier Ireland Ltd.保留所有权利。

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