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拟南芥中一个类似KNOTTED1的同源异型盒基因在营养分生组织中表达,在转基因植物中过表达时会显著改变叶片形态。

A knotted1-like homeobox gene in Arabidopsis is expressed in the vegetative meristem and dramatically alters leaf morphology when overexpressed in transgenic plants.

作者信息

Lincoln C, Long J, Yamaguchi J, Serikawa K, Hake S

机构信息

Department of Plant Biology, University of California, Berkeley 94720.

出版信息

Plant Cell. 1994 Dec;6(12):1859-76. doi: 10.1105/tpc.6.12.1859.

Abstract

The homeobox gene knotted1 (kn1) was first isolated by transposon tagging a dominant leaf mutant in maize. Related maize genes, isolated by virtue of sequence conservation within the homeobox, fall into two classes based on sequence similarity and expression patterns. Here, we report the characterization of two genes, KNAT1 and KNAT2 (for knotted-like from Arabidopsis thaliana) that were cloned from Arabidopsis using the kn1 homeobox as a heterologous probe. The homeodomains of KNAT1 and KNAT2 are very similar to the homeodomains of proteins encoded by class 1 maize genes, ranging from 78 to 95% amino acid identity. Overall, the deduced KNAT1 and KNAT2 proteins share amino acid identities of 53 and 40%, respectively, with the KN1 protein. Intron positions are also fairly well conserved among KNAT1, KNAT2, and kn1. Based on in situ hybridization analysis, the expression pattern of KNAT1 during vegetative development is similar to that of class 1 maize genes. In the shoot apex, KNAT1 transcript is localized primarily to the shoot apical meristem; down-regulation of expression occurs as leaf primordia are initiated. In contrast to the expression of class 1 maize genes in floral and inflorescence meristems, the expression of KNAT1 in the shoot meristem decreases during the floral transition and is restricted to the cortex of the inflorescence stem. Transgenic Arabidopsis plants carrying the KNAT1 cDNA and the kn1 cDNA fused to the cauliflower mosaic virus 35S promoter were generated. Misexpression of KNAT1 and kn1 resulted in highly abnormal leaf morphology that included severely lobed leaves. The expression pattern of KNAT1 in the shoot meristem combined with the results of transgenic overexpression experiments supports the hypothesis that class 1 kn1-like genes play a role in morphogenesis.

摘要

同源异型框基因knotted1(kn1)最初是通过转座子标签法从玉米中一个显性叶片突变体中分离出来的。借助同源异型框内的序列保守性分离出的相关玉米基因,根据序列相似性和表达模式可分为两类。在此,我们报告了两个基因KNAT1和KNAT2(来自拟南芥的类knotted基因)的特征,它们是利用kn1同源异型框作为异源探针从拟南芥中克隆出来的。KNAT1和KNAT2的同源结构域与1类玉米基因编码的蛋白质的同源结构域非常相似,氨基酸同一性在78%至95%之间。总体而言,推导的KNAT1和KNAT2蛋白质与KN1蛋白质的氨基酸同一性分别为53%和40%。KNAT1、KNAT2和kn1之间的内含子位置也相当保守。基于原位杂交分析,KNAT1在营养发育过程中的表达模式与1类玉米基因相似。在茎尖,KNAT1转录本主要定位于茎尖分生组织;随着叶原基的起始,表达下调。与1类玉米基因在花分生组织和花序分生组织中的表达不同,KNAT1在茎分生组织中的表达在花转变期间减少,并局限于花序茎的皮层。构建了携带与花椰菜花叶病毒35S启动子融合的KNAT1 cDNA和kn1 cDNA的转基因拟南芥植株。KNAT1和kn1的错误表达导致叶片形态高度异常,包括严重裂叶。KNAT1在茎分生组织中的表达模式与转基因过表达实验结果支持了1类kn1样基因在形态发生中起作用的假说。

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