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玉米中MADS-box基因家族的特征分析

A characterization of the MADS-box gene family in maize.

作者信息

Mena M, Mandel M A, Lerner D R, Yanofsky M F, Schmidt R J

机构信息

Department of Biology, University of California at San Diego, La Jolla 92093-0116, USA.

出版信息

Plant J. 1995 Dec;8(6):845-54. doi: 10.1046/j.1365-313x.1995.8060845.x.

Abstract

Studies on distantly related dicot plant species have identified homeotic genes that specify floral meristem identity and determine the fate of floral organ primordia. Most of these genes belong to a family characterized by the presence of a structural motif, the MADS-box, which encodes a protein domain with DNA-binding properties. As part of an effort to understand how such genes may have been recruited during the evolution of flowers with different organ types such as those found in maize, two members of this gene family in maize, ZAG1 and ZAG2, have been characterized previously. Here, the isolation and characterization of four new members of this gene family, designated ZAP1, ZAG3, ZAG4 and ZAG5, are described and the genetic map position of these and 28 additional maize MADS-box genes is determined. The first new member of this family appears to be the Zea mays ortholog of the floral homeotic gene APETALA1 (AP1) and has been designated ZAP1. One of these genes, ZAG4, is unusual in that its deduced protein sequence includes the MADS domain but lacks the K-domain characteristically present in this family of genes. In addition, its copy number and expression varies among different inbreds. A large number of maize MADS-box genes map to duplicated regions of the genome, including one pair characterized here, ZAG3 and ZAG5. These data underscore the complexity of this gene family in maize, and provide the basis for further studies into the regulation of floral organ morphogenesis among the grasses.

摘要

对远缘双子叶植物物种的研究已经鉴定出了决定花分生组织特性并决定花器官原基命运的同源异型基因。这些基因大多属于一个家族,其特征是存在一种结构基序,即MADS框,它编码具有DNA结合特性的蛋白质结构域。为了了解在具有不同器官类型的花(如玉米中的花)的进化过程中这些基因是如何被招募的,之前已经对玉米中这个基因家族的两个成员ZAG1和ZAG2进行了表征。在此,描述了这个基因家族四个新成员ZAP1、ZAG3、ZAG4和ZAG5的分离和表征,并确定了这些基因以及另外28个玉米MADS框基因在遗传图谱上的位置。这个家族的第一个新成员似乎是花同源异型基因APETALA1(AP1)的玉米直系同源基因,并被命名为ZAP1。这些基因中的一个,ZAG4,不同寻常之处在于其推导的蛋白质序列包含MADS结构域,但缺乏该基因家族中典型存在的K结构域。此外,它的拷贝数和表达在不同的近交系中有所不同。大量的玉米MADS框基因定位到基因组的重复区域,包括这里表征的一对基因ZAG3和ZAG5。这些数据强调了玉米中这个基因家族的复杂性,并为进一步研究禾本科植物花器官形态发生的调控提供了基础。

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