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来自基生被子植物武当木兰(木兰科)的两个祖先 APETALA3 同源物可以影响拟南芥的花发育。

Two ancestral APETALA3 homologs from the basal angiosperm Magnolia wufengensis (Magnoliaceae) can affect flower development of Arabidopsis.

机构信息

Biotechnology Research Center, China Three Gorges University, Yichang City, Hubei Province 443002, PR China.

College of Horticulture and Gardening, Yangtze University, Jingzhou City, Hubei Province 434025, PR China.

出版信息

Gene. 2014 Mar 1;537(1):100-7. doi: 10.1016/j.gene.2013.11.076. Epub 2013 Dec 12.

DOI:10.1016/j.gene.2013.11.076
PMID:24334124
Abstract

APETALA3 (AP3) homologs are involved in specifying petal and stamen identities in core eudicot model organisms. In order to investigate the functional conservation of AP3 homologs between core eudicots and basal angiosperm, we isolated and identified two AP3 homologs from Magnolia wufengensis, a woody basal angiosperm belonging to the family Magnoliaceae. Sequence and phylogenetic analyses revealed that both genes are clade members of the paleoAP3 lineage. Moreover, a highly conserved motif of paleoAP3 is found in the C-terminal regions of MAwuAP3_1/2 proteins, but the PI-derived motif, usually present in AP3/DEF-like lineage members, is missing. Semi-quantitative and real time PCR analyses showed that the expression of MAwuAP3_1/2 was restricted to tepals and stamens. However, the MAwuAP3_1 expression was maintained at a high level during the rapid increased in size of tepals and stamens, while MAwuAP3_2 mRNA was only detected at the early stage of tepal and stamen development. Furthermore, the expression of MAwuAP3_1/2 in transgenic Arabidopsis causes phenotypic changes which partly resemble those caused by ectopic expressions of the endogenous AP3 gene. Moreover, the 35S::MAwuAP3_1/2 transgenic Arabidopsis can be used partially to rescue the loss-of-function ap3 mutant (ap3-3) of Arabidopsis. These findings call for a more comprehensive understanding of the B-functional evolution from basal angiosperm to core eudicot clades.

摘要

APETALA3(AP3)同源物参与核心真双子叶植物模式生物中花瓣和雄蕊身份的指定。为了研究核心真双子叶植物和基生被子植物之间 AP3 同源物的功能保守性,我们从木莲(Magnolia wufengensis)中分离并鉴定了两个 AP3 同源物,木莲是属于木兰科的木质基生被子植物。序列和系统发育分析表明,这两个基因都是 paleoAP3 谱系的分支成员。此外,在 MAwuAP3_1/2 蛋白的 C 端区域发现了 paleoAP3 的高度保守基序,但缺失了通常存在于 AP3/DEF 样谱系成员中的 PI 衍生基序。半定量和实时 PCR 分析表明,MAwuAP3_1/2 的表达仅限于花瓣和雄蕊。然而,MAwuAP3_1 的表达在花瓣和雄蕊快速增大的过程中保持高水平,而 MAwuAP3_2 的 mRNA 仅在花瓣和雄蕊发育的早期阶段检测到。此外,MAwuAP3_1/2 在转基因拟南芥中的表达导致表型变化,部分类似于内源性 AP3 基因异位表达引起的表型变化。此外,35S::MAwuAP3_1/2 转基因拟南芥可部分用于挽救拟南芥 ap3 突变体(ap3-3)的功能丧失。这些发现呼吁更全面地了解从基生被子植物到核心真双子叶植物类群的 B 功能进化。

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