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异常圆锥花序组织1在时间上调控水稻的分生组织特性。

ABERRANT PANICLE ORGANIZATION 1 temporally regulates meristem identity in rice.

作者信息

Ikeda Kyoko, Nagasawa Nobuhiro, Nagato Yasuo

机构信息

Graduate School of Agricultural and Life Sciences, University of Tokyo, Tokyo 113-8657, Japan.

出版信息

Dev Biol. 2005 Jun 15;282(2):349-60. doi: 10.1016/j.ydbio.2005.03.016.

Abstract

We report a recessive mutation of rice, aberrant panicle organization 1 (apo1), which severely affects inflorescence architecture, floral organ identity, and leaf production rate. In the wild-type inflorescence, the main-axis meristem aborts after forming 10-12 primary branch primordia. However, in apo1, the main-axis meristem was converted to a spikelet meristem after producing a small number of branch primordia. In addition, the branch meristems in apo1 became spikelet meristems earlier than in wild type. Therefore, in the inflorescence, the apo1 mutation caused the precocious conversion of the meristem identity. In the apo1 flower, lodicules were increased at the expense of stamens, and carpels were formed indeterminately by the loss of meristem determinacy. Vegetative development is also affected in the apo1. Leaves were formed rapidly throughout the vegetative phase, indicating that APO1 is also involved in temporal regulation of leaf production. These phenotypes suggest that the APO1 plays an important role in the temporal regulation of both vegetative and reproductive development.

摘要

我们报道了水稻的一个隐性突变体——异常穗型组织1(apo1),它严重影响花序结构、花器官特性以及叶片产生速率。在野生型花序中,主轴分生组织在形成10 - 12个一级分支原基后停止发育。然而,在apo1突变体中,主轴分生组织在产生少数分支原基后转变为小穗分生组织。此外,apo1中的分支分生组织比野生型更早地转变为小穗分生组织。因此,在花序中,apo1突变导致分生组织特性的早熟转变。在apo1花中,浆片增多而雄蕊减少,并且由于分生组织确定性的丧失,心皮不定地形成。营养生长在apo1中也受到影响。在整个营养生长阶段叶片快速形成,表明APO1也参与叶片产生的时间调控。这些表型表明APO1在营养生长和生殖发育的时间调控中都起着重要作用。

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