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首页> 外文期刊>Planta: An International Journal of Plant Biology >Duplication of AP1 within the Spinacia oleracea L. AP1/FUL clade is followed by rapid amino acid and regulatory evolution
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Duplication of AP1 within the Spinacia oleracea L. AP1/FUL clade is followed by rapid amino acid and regulatory evolution

机译:菠菜中AP1的复制.AP1 / FUL进化枝随后是快速氨基酸和调节进化

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摘要

The AP1/FUL clade of MADS box genes have undergone multiple duplication events among angiosperm species. While initially identified as having floral meristem identity and floral organ identity function in Arabidopsis, the role of AP1 homologs does not appear to be universally conserved even among eudicots. In comparison, the role of FRUITFULL has not been extensively explored in non-model species. We report on the isolation of three AP1/FUL genes from cultivated spinach, Spinacia oleracea L. Two genes, designated SpAPETALA1-1 (SpAP1-1) and SpAPETALA1-2 (SpAP1-2), cluster as paralogous genes within the Caryophyllales AP1 clade. They are highly differentiated in the 3', carboxyl-end encoding region of the gene following the third amphipathic alpha-helix region, while still retaining some elements of a signature AP1 carboxyl motifs. In situ hybridization studies also demonstrate that the two paralogs have evolved different temporal and spatial expression patterns, and that neither gene is expressed in the developing sepal whorl, suggesting that the AP1 floral organ identity function is not conserved in spinach. The spinach FRUITFULL homolog, SpFRUITFULL (SpFUL), has retained the conserved motif and groups with Caryophyllales FRUITFULL homologs. SpFUL is expressed in leaf as well as in floral tissue, and shows strong expression late in flower development, particularly in the tapetal layer in males, and in the endothecium layer and stigma, in the females. The combined evidence of high rates of non-synonymous substitutions and differential expression patterns supports a scenario in which the AP1 homologs in the spinach AP1/FUL gene family have experienced rapid evolution following duplication.
机译:MADS盒基因的AP1 / FUL进化枝在被子植物中经历了多次复制事件。虽然最初被鉴定为在拟南芥中具有花分生组织身份和花器官身份的功能,但即使在双子叶植物中,AP1同源物的作用似乎也不是普遍保守的。相比之下,尚未在非模型物种中广泛研究FRUITFULL的作用。我们报告了从栽培菠菜菠菜L中分离出的三个AP1 / FUL基因的分离。命名为SpAPETALA1-1(SpAP1-1)和SpAPETALA1-2(SpAP1-2)的两个基因在石竹叶AP1进化枝内作为旁系基因聚类。它们在第三个两亲性α-螺旋区之后的基因的3'羧基末端编码区中高度分化,同时仍然保留了AP1羧基基序的某些元素。原位杂交研究还表明,这两个旁系同源物已进化出不同的时间和空间表达模式,并且在发育中的萼片螺纹中均未表达任何基因,这表明菠菜中AP1花器官身份的功能并不保守。菠菜FRUITFULL同源物SpFRUITFULL(SpFUL)保留了与石竹叶肉FRUITFULL同源物保守的基序和基团。 SpFUL在叶以及花组织中表达,并在花发育后期显示强表达,特别是在雄性的绒毛层,雌性的内皮层和柱头中。非同义词替换和差异表达模式的高发生率综合证据支持了菠菜AP1 / FUL基因家族中AP1同源物在复制后经历了快速进化的情况。

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