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LEAFY PETIOLE基因的激活标签影响拟南芥叶叶柄发育。

Activation tagging of the LEAFY PETIOLE gene affects leaf petiole development in Arabidopsis thaliana.

作者信息

van der Graaff E, Dulk-Ras A D, Hooykaas P J, Keller B

机构信息

Institute of Plant Biology, University of Zürich, Zollikerstrasse 107, CH-8008 Zürich, Switzerland.

出版信息

Development. 2000 Nov;127(22):4971-80. doi: 10.1242/dev.127.22.4971.

Abstract

In a screen for leaf developmental mutants we have isolated an activator T-DNA-tagged mutant that produces leaves without a petiole. In addition to that leafy petiole phenotype this lettuce (let) mutant shows aberrant inflorescence branching and silique shape. The LEAFY PETIOLE (LEP) gene is located close to the right border of the T-DNA insert linked with these dominant phenotypes and encodes a protein with a domain with similarity to the DNA binding domain of members of the AP2/EREBP family of transcription factors. Introduction of the activation-tagged LEP gene in wild-type plants conferred all the phenotypic aberrations mentioned above. The leafy petiole phenotype consists of a conversion of the proximal part of the leaf from petiole into leaf blade, which means that leaf development in let is disturbed along the proximodistal axis. Therefore, LEP is involved in either cell division activity in the marginal meristem or patterning along the proximodistal axis.

摘要

在一项叶片发育突变体筛选中,我们分离出一个激活标签T-DNA插入突变体,该突变体产生的叶片无叶柄。除了叶片叶柄表型外,这个生菜(let)突变体还表现出异常的花序分支和角果形状。叶状叶柄(LEP)基因位于与这些显性表型相关的T-DNA插入片段右边界附近,编码一种蛋白质,该蛋白质具有一个与AP2/EREBP转录因子家族成员的DNA结合结构域相似的结构域。将激活标签LEP基因导入野生型植物中会导致上述所有表型异常。叶状叶柄表型包括叶片近端部分从叶柄转变为叶片,这意味着let中的叶片发育在近远轴上受到干扰。因此,LEP参与边缘分生组织中的细胞分裂活动或沿近远轴的模式形成。

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