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首页> 外文期刊>Journal of Experimental Botany >Unique and redundant functional domains of APETALA1 and CAULIFLOWER, two recently duplicated Arabidopsis thaliana floral MADS-box genes
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Unique and redundant functional domains of APETALA1 and CAULIFLOWER, two recently duplicated Arabidopsis thaliana floral MADS-box genes

机译:APETALA1和CAULIFLOWER的独特和冗余功能域,两个最近重复的拟南芥花MADS-box基因

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APETALA1 (AP1) and CAULIFLOWER (CAL) are closely related MADS box genes that are partially redundant during Arabidopsis thaliana floral meristem determination. AP1 is able to fully substitute for CAL functions, but not vice versa, and AP1 has unique sepal and petal identity specification functions. In this study, the unique and redundant functions of these two genes has been mapped to the four protein domains that characterize type-II MADS-domain proteins by expressing all 15 chimeric combinations of AP1 and CAL cDNA regions under control of the AP1 promoter in ap1-1 loss-of-function plants. The ‘in vivo’ function of these chimeric genes was analysed in Arabidopsis plants by expressing the chimeras. Rescue of flower meristem and sepal/petal identities was scored in single and multiple insert homozygous transgenic lines. Using these chimeric lines, it was found that distinct residues of the AP1 K domain not shared by the same CAL domain are necessary and sufficient for complete recovery of floral meristem identity, in the context of the CAL protein sequence, while both AP1 COOH and K domains are indispensable for complete rescue of sepal identity. By contrast, either one of these two AP1 domains is necessary and sufficient for complete petal identity recovery. It was also found that there were positive and negative synergies among protein domains and their combinations, and that multiple-insert lines showed relatively better rescue than equivalent single-insert lines. Finally, several lines had flowers with extra sepals and petals suggesting that chimeric proteins yield abnormal transcriptional complexes that may alter the expression or regulation of genes that control floral organ number under normal conditions.
机译:APETALA1(AP1)和CAULIFLOWER(CAL)是紧密相关的MADS盒基因,在拟南芥花分生组织测定过程中部分冗余。 AP1可以完全替代CAL功能,反之则不能,而AP1具有独特的萼片和花瓣身份指定功能。在这项研究中,这两个基因的独特和冗余功能已通过在ap1中AP1启动子的控制下表达AP1和CAL cDNA区域的所有15种嵌合组合,被映射到表征II型MADS域蛋白的四个蛋白质域。 -1功能丧失的工厂。通过表达嵌合体,在拟南芥植物中分析了这些嵌合基因的“体内”功能。在单个和多个插入纯合的转基因系中对花分生组织和萼片/花瓣身份的抢救进行了评分。使用这些嵌合系,发现在CAL蛋白序列的背景下,AP1 K结构域未共享的同一CAL结构域的不同残基对于完全恢复花分生组织的身份是必要且充分的,而AP1 COOH和K域对于彻底拯救萼片身份必不可少。相比之下,这两个AP1域中的任何一个域对于完整的花瓣身份恢复都是必要和充分的。还发现蛋白质结构域及其组合之间存在正和负协同作用,并且多插入品系显示出比同等单插入品系相对更好的拯救。最后,几行花有多余的萼片和花瓣,表明嵌合蛋白产生异常的转录复合物,在正常条件下可能会改变控制花器官数量的基因的表达或调控。

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