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来自欧洲云杉的APETALA2类基因与其拟南芥同源基因具有功能相似性。

APETALA2 like genes from Picea abies show functional similarities to their Arabidopsis homologues.

作者信息

Nilsson Lars, Carlsbecker Annelie, Sundås-Larsson Annika, Vahala Tiina

机构信息

Department of Physiological Botany, Evolutionary Biology Centre, Uppsala University, Norbyvägen 18D, 752 36 Uppsala, Sweden.

出版信息

Planta. 2007 Feb;225(3):589-602. doi: 10.1007/s00425-006-0374-1. Epub 2006 Sep 5.

Abstract

In angiosperm flower development the identity of the floral organs is determined by the A, B and C factors. Here we present the characterisation of three homologues of the A class gene APETALA2 (AP2) from the conifer Picea abies (Norway spruce), Picea abies APETALA2 LIKE1 (PaAP2L1), PaAP2L2 and PaAP2L3. Similar to AP2 these genes contain sequence motifs complementary to miRNA172 that has been shown to regulate AP2 in Arabidopsis. The genes display distinct expression patterns during plant development; in the female-cone bud PaAP2L1 and PaAP2L3 are expressed in the seed-bearing ovuliferous scale in a pattern complementary to each other, and overlapping with the expression of the C class-related gene DAL2. To study the function of PaAP2L1 and PaAP2L2 the genes were expressed in Arabidopsis. The transgenic PaAP2L2 plants were stunted and flowered later than control plants. Flowers were indeterminate and produced an excess of floral organs most severely in the two inner whorls, associated with an ectopic expression of the meristem-regulating gene WUSCHEL. No homeotic changes in floral-organ identities occurred, but in the ap2-1 mutant background PaAP2L2 was able to promote petal identity, indicating that the spruce AP2 gene has the capacity to substitute for an A class gene in Arabidopsis. In spite of the long evolutionary distance between angiosperms and gymnosperms and the fact that gymnosperms lack structures homologous to sepals and petals our data supports a functional conservation of AP2 genes among the seed plants.

摘要

在被子植物花的发育过程中,花器官的特征由A、B和C因子决定。在此,我们展示了来自针叶树欧洲云杉(Picea abies)的A类基因APETALA2(AP2)的三个同源基因的特征,即欧洲云杉APETALA2样基因1(PaAP2L1)、PaAP2L2和PaAP2L3。与AP2相似,这些基因含有与miRNA172互补的序列基序,miRNA172已被证明在拟南芥中调控AP2。这些基因在植物发育过程中表现出不同的表达模式;在雌球花芽中,PaAP2L1和PaAP2L3在具种子的珠鳞中表达,其模式相互互补,并与C类相关基因DAL2的表达重叠。为了研究PaAP2L1和PaAP2L2的功能,将这些基因在拟南芥中进行表达。转基因PaAP2L2植株生长受阻,开花时间比对照植株晚。花是无限的,在两个内轮中产生过量的花器官,这与分生组织调控基因WUSCHEL的异位表达有关。花器官的特征没有发生同源异型变化,但在ap2 - 1突变体背景下,PaAP2L2能够促进花瓣特征的形成,这表明云杉AP2基因有能力替代拟南芥中的A类基因。尽管被子植物和裸子植物之间存在漫长的进化距离,且裸子植物缺乏与萼片和花瓣同源的结构,但我们的数据支持种子植物中AP2基因的功能保守性。

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