Moreno-Risueno Miguel Angel, González Noemi, Díaz Isabel, Parcy François, Carbonero Pilar, Vicente-Carbajosa Jesús
Laboratorio de Bioquímica y Biología Molecular, Departamento de Biotecnología, Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid, ETS Ingenieros Agrónomos, 28040 Madrid, Spain.
Plant J. 2008 Mar;53(6):882-94. doi: 10.1111/j.1365-313X.2007.03382.x. Epub 2007 Nov 29.
Accumulation of storage compounds in the embryo and endosperm of developing seeds is a highly regulated process that allows seedling growth upon germination until photosynthetic capacity is acquired. A critical regulatory element in the promoters of seed storage protein (SSP) genes from dicotyledonous species is the RY box, a target of B3-type transcription factors. However, the functionality of this motif in the transcriptional regulation of SSP genes from cereals has not been fully established. We report here the identification and molecular characterization of barley FUSCA3, a B3-type transcription factor as yet uncharacterized in monocotyledonous plants. Our results show that both the barley and Arabidopsis FUS3 genes maintain a conserved functionality for the regulation of SSP genes and anthocyanin biosynthesis in these two distantly related phylogenetic groups. Complementation of the loss-of-function mutant fus3 in Arabidopsis by the barley HvFus3 gene resulted in restored transcription from the At2S3 gene promoter and normal accumulation of anthocyanins in the seed. In barley, HvFUS3 participates in transcriptional activation of the endosperm-specific genes Hor2 and Itr1. HvFUS3, which specifically binds to RY boxes in EMSA experiments, trans-activates Hor2 and Itr1 promoters containing intact RY boxes in transient expression assays in developing endosperms. Mutations in the RY boxes abolished the HvFUS3-mediated trans-activation. HvFus3 transcripts accumulate in the endosperm and in the embryo of developing seeds, peaking at mid maturation phase. Remarkably, HvFUS3 interacts with the Opaque2-like bZIP factor BLZ2 in yeast, and this interaction is essential for full trans-activation of the seed-specific genes in planta.
在发育种子的胚和胚乳中储存化合物的积累是一个高度调控的过程,它使种子在萌发后能够生长,直至获得光合能力。双子叶植物种子储存蛋白(SSP)基因启动子中的一个关键调控元件是RY盒,它是B3型转录因子的作用靶点。然而,这个基序在谷类作物SSP基因转录调控中的功能尚未完全明确。我们在此报告大麦FUSCA3的鉴定和分子特征,FUSCA3是一种在单子叶植物中尚未被鉴定的B3型转录因子。我们的结果表明,大麦和拟南芥的FUS3基因在这两个亲缘关系较远的系统发育类群中,对SSP基因的调控和花青素生物合成保持着保守的功能。大麦HvFus3基因对拟南芥功能缺失突变体fus3的互补作用,导致At2S3基因启动子转录恢复,种子中花青素正常积累。在大麦中,HvFUS3参与胚乳特异性基因Hor2和Itr1的转录激活。在电泳迁移率变动分析实验中,HvFUS3特异性结合RY盒,在发育胚乳的瞬时表达分析中,它能反式激活含有完整RY盒的Hor2和Itr1启动子。RY盒中的突变消除了HvFUS3介导的反式激活作用。HvFus3转录本在发育种子的胚乳和胚中积累,在成熟中期达到峰值。值得注意的是,HvFUS3在酵母中与不透明2样bZIP因子BLZ2相互作用,这种相互作用对于植物中种子特异性基因的完全反式激活至关重要。