Analysis of Floral Organ Identity in Arabidopsis
Analysis of Floral Organ Identity in Arabidopsis
批准号:
9405884
负责人:
Thomas Jack
金额:
$31.5万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
1994
资助国家:
美国
项目状态:
已结题
起止时间:
1994-09-15 至 1999-08-31
中文摘要
植物的发育与动物的发育有许多根本的不同。 十字花科植物拟南芥的花被用作试图理解控制植物发育的基本分子机制的模型。 特别是,所提出的实验集中在花中的器官身份的规格。 近年来在许多植物物种中进行的实验,特别是在拟南芥和金鱼草中,已经揭示了控制花中器官身份的指定的基因在不同的植物物种中是高度保守的。 因此,在拟南芥中收集的花发育信息可能适用于其他植物物种。 这里提出的实验处理APETALA3(AP3),一个同源异型基因参与指定的花瓣和雄蕊的发展在花的特性。 AP3已被克隆,其RNA和蛋白质表达模式的特点。 AP3蛋白具有一个保守的57个氨基酸的结构域,称为MADS结构域。 假设MADS结构域编码DNA结合功能,并且有证据表明AP 3结合DNA。 然而,植物MADS结构域蛋白的生物学功能的阐明由于缺乏生物学相关的靶(DNA结合)序列而受到阻碍。 第一组提出的实验旨在定义AP 3启动子中参与AP 3的建立、维持(自动调节)和胚珠特异性表达的序列。 第二组拟议的实验旨在鉴定与AP 3相互作用、调节或受AP 3调节的基因。 抑制子和增强子突变与ap3和其他花同源异型突变体的遗传相互作用将被表征。
英文摘要
Plant development differs from animal development in a variety of fundamental ways. The flower of the cruciferous plant Arabidopsis thaliana is being used as a model to attempt to understand the basic molecular mechanisms that control plant development. In particular, the proposed experiments focus on the specification of organ identity in the flower. Experiments performed in recent years in a number of plant species, in particular in Arabidopsis and snapdragon, have revealed that the genes that control the specification of organ identity in the flower are highly conserved in different plant species. Thus, information gathered about flower development in Arabidopsis is likely to be applicable to other plant species. The experiments proposed here deal with the characterization of APETALA3 (AP3), a homeotic gene involved in specifying the development of petals and stamens in the flower. AP3 has been cloned and its RNA and protein expression patterns characterized. The AP3 protein has a conserved 57 amino acid domain called the MADS domain. The MADS domain is postulated to encode a DNA binding function, and there is evidence that AP3 binds DNA. Elucidation of the biological function o the plant MADS domain proteins, however, has been hindered by the lack of a biologically relevant target (DNA binding) sequence. The first set of proposed experiments is aimed at defining the sequences in the AP3 promoter involved in establishment, maintenance (autoregulation), and ovule- specific expression of AP3. The second set of proposed experiments is designed to identify genes that interact, regulate, or are regulated by AP3. The genetic interactions of the suppressor and enhancer mutations with both ap3 and the other floral homeotic mutants will be characterized.
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