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基部被子植物中含MADS盒基因的APETALA3和PISTILLATA谱系的演化

Evolution of the APETALA3 and PISTILLATA lineages of MADS-box-containing genes in the basal angiosperms.

作者信息

Stellari Giulia M, Jaramillo M Alejandra, Kramer Elena M

机构信息

Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, Massachusetts, USA.

出版信息

Mol Biol Evol. 2004 Mar;21(3):506-19. doi: 10.1093/molbev/msh044. Epub 2003 Dec 23.

Abstract

The B class genes, including homologs of the Arabidopsis loci APETALA3 (AP3) and PISTILLATA (PI ), appear to play a conserved role in the determination of petal and stamen identity across core eudicot angiosperms. Understanding how and when these functions evolved is a critical component of elucidating the evolution of flowers, particularly the appearance of petaloid perianth organs. Before comparisons of gene expression patterns or functions can be made, however, it is necessary to establish the orthology of AP3 and PI homologs from basal angiosperms. Here, we report the identification and analysis of 29 new representatives of the B gene lineage from basal ANITA and magnoliid dicot angiosperms. These studies indicate that gene duplications have occurred at every phylogenetic level, both before and after the duplication that produced the separate AP3 and PI lineages. Comparison of genomic structure among PI homologs indicates that a 12-nucleotide deletion that had been considered synapomorphic for the whole PI lineage actually arose within the ANITA grade, after the split of the Nymphaeales but before the separation of the Austrobaileyales. Evidence for alternative splicing of the Nymphaea AP3 homolog is also presented. The implications of these findings for angiosperm systematics, the conservation of AP3 and PI gene function, and the evolution of the ABC program are discussed.

摘要

B类基因,包括拟南芥基因座APETALA3(AP3)和PISTILLATA(PI)的同源基因,似乎在整个核心真双子叶被子植物花瓣和雄蕊特征的决定中发挥着保守作用。了解这些功能如何以及何时进化,是阐明花的进化,尤其是花瓣状花被器官出现的关键组成部分。然而,在进行基因表达模式或功能的比较之前,有必要确定基部被子植物中AP3和PI同源基因的直系同源关系。在这里,我们报告了从基部ANITA和木兰类双子叶被子植物中鉴定和分析的29个B基因谱系的新代表。这些研究表明,在产生单独的AP3和PI谱系的重复之前和之后,基因重复在每个系统发育水平上都发生过。PI同源基因之间的基因组结构比较表明,一个被认为是整个PI谱系共衍征的12个核苷酸的缺失实际上是在睡莲目分裂后、八角目分离前的ANITA类群中出现的。还提供了睡莲AP3同源基因可变剪接的证据。讨论了这些发现对被子植物系统学、AP3和PI基因功能保守性以及ABC模型进化的影响。

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