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CLAVATA1,拟南芥中分生组织和花发育的调控因子。

CLAVATA1, a regulator of meristem and flower development in Arabidopsis.

作者信息

Clark S E, Running M P, Meyerowitz E M

机构信息

Division of Biology 156-29, California Institute of Technology, Pasadena 91125.

出版信息

Development. 1993 Oct;119(2):397-418. doi: 10.1242/dev.119.2.397.

Abstract

We have investigated the effects on plant development of mutations in the Arabidopsis thaliana CLAVATA1 gene. In clavata1 plants, vegetative, inflorescence and floral meristems are all enlarged relative to wild type. The apical meristem can fasciate in the more severe mutant alleles, and this fasciation can occur prior to the transition to flowering. Flowers of clavata1 plants can have increased numbers of organs in all four whorls, and can also have additional whorls not present in wild-type flowers. Double mutant combinations of clavata1 with agamous, apetala2, apetala3 and pistillata indicate that CLAVATA1 controls the underlying floral meristem structure upon which these homeotic genes act. Double mutant combinations of clavata1 with apetala1 and leafy indicate CLAVATA1 plays a role in establishing and maintaining floral meristem identity, in addition to its role in controlling meristem size. In support of this, RNA expression patterns of AGAMOUS and APETALA1 are altered in clavata1 flowers.

摘要

我们研究了拟南芥CLAVATA1基因突变对植物发育的影响。在clavata1植株中,营养分生组织、花序分生组织和花分生组织相对于野生型均增大。在较严重的突变等位基因中,顶端分生组织会形成扁化,且这种扁化可在开花转变之前发生。clavata1植株的花在所有四轮器官中都可能有更多数量的器官,并且还可能有野生型花中不存在的额外轮次。clavata1与agamous、apetala2、apetala3和pistillata的双突变组合表明,CLAVATA1控制着这些同源异型基因作用的潜在花分生组织结构。clavata1与apetala1和leafy的双突变组合表明,CLAVATA1除了在控制分生组织大小方面发挥作用外,在建立和维持花分生组织特性方面也发挥作用。支持这一点的是,AGAMOUS和APETALA1的RNA表达模式在clavata1花中发生了改变。

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