Sundström Jens, Engström Peter
Evolutionary Biology Center, Physiological Botany, Uppsala University Villavägen 6, S-752 36 Uppsala, Sweden.
Plant J. 2002 Jul;31(2):161-9. doi: 10.1046/j.1365-313x.2002.01343.x.
The Norway spruce MADS-box genes DAL11, DAL12 and DAL13 are phylogenetically related to the angiosperm B-function MADS-box genes: genes that act together with A-function genes in specifying petal identity and with C-function genes in specifying stamen identity to floral organs. In this report we present evidence to suggest that the B-gene function in the specification of identity of the pollen-bearing organs has been conserved between conifers and angiosperms. Expression of DAL11 or DAL12 in transgenic Arabidopsis causes phenotypic changes which partly resemble those caused by ectopic expression of the endogenous B-genes. In similar experiments, flowers of Arabidopsis plants expressing DAL13 showed a different homeotic change in that they formed ectopic anthers in whorls one, two or four. We also demonstrate the capacity of the spruce gene products to form homodimers, and that DAL11 and DAL13 may form heterodimers with each other and with the Arabidopsis B-protein AP3, but not with PI, the second B-gene product in Arabidopsis. In situ hybridization experiments show that the conifer B-like genes are expressed specifically in developing pollen cones, but differ in both temporal and spatial distribution patterns. These results suggest that the B-function in conifers is dual and is separated into a meristem identity and an organ identity function, the latter function possibly being independent of an interaction with the C-function. Thus, even though an ancestral B-function may have acted in combination with C to specify micro- and megasporangia, the B-function has evolved differently in conifers and angiosperms.
挪威云杉的MADS-box基因DAL11、DAL12和DAL13在系统发育上与被子植物的B功能MADS-box基因相关:这些基因与A功能基因共同作用来确定花瓣的身份,与C功能基因共同作用来确定雄蕊的身份,从而确定花器官的身份。在本报告中,我们提供证据表明,在针叶树和被子植物之间,B基因在确定含花粉器官身份方面的功能是保守的。DAL11或DAL12在转基因拟南芥中的表达会引起表型变化,这些变化部分类似于内源性B基因异位表达所引起的变化。在类似的实验中,表达DAL13的拟南芥植株的花表现出不同的同源异型变化,即它们在第一轮、第二轮或第四轮中形成异位花药。我们还证明了云杉基因产物形成同二聚体的能力,并且DAL11和DAL13可能彼此形成异二聚体,也可能与拟南芥B蛋白AP3形成异二聚体,但不能与拟南芥中的第二个B基因产物PI形成异二聚体。原位杂交实验表明,针叶树类B基因在发育中的花粉球果中特异性表达,但在时间和空间分布模式上有所不同。这些结果表明,针叶树中的B功能是双重的,分为分生组织身份和器官身份功能,后一种功能可能独立于与C功能的相互作用。因此,尽管祖先的B功能可能与C共同作用来确定小孢子囊和大孢子囊,但B功能在针叶树和被子植物中的进化方式有所不同。