Krizek Beth A, Lewis Michael W, Fletcher Jennifer C
Department of Biological Sciences, University of South Carolina, 700 Sumter Street, Columbia, SC 29208, USA.
Plant J. 2006 Feb;45(3):369-83. doi: 10.1111/j.1365-313X.2005.02633.x.
The RABBIT EARS (RBE) gene has been identified as a regulator of petal development in Arabidopsis thaliana. We find that second-whorl petals in rbe mutants can be replaced with staminoid organs, stamens or filaments and that some rbe flowers have increased numbers of sepals and exhibit fusion of sepals. We show that these rbe defects are due to AGAMOUS (AG) misexpression in the second whorl. Consistent with its role in maintaining the spatial boundary of AG expression, rbe enhanced the second-whorl defects present in ap2-1, lug-1 and clf-2 mutants. In the development of second-whorl organs, RBE acts in the same pathway and downstream of UNUSUAL FLORAL ORGANS (UFO). Enhanced first-whorl organ fusion in ap2-2 rbe-3, ant-4 rbe-3 and cuc2-1 rbe-3 double mutants supports an additional role for RBE in organ separation. RBE thus acts to maintain two different types of spatial boundaries in young flowers: boundaries between organ primordia within a whorl and boundaries of homeotic gene expression between whorls.
RABBIT EARS(RBE)基因已被确定为拟南芥花瓣发育的调节因子。我们发现,rbe突变体中的第二轮花瓣可被类雄蕊器官、雄蕊或花丝取代,并且一些rbe花的萼片数量增加且出现萼片融合现象。我们表明,这些rbe缺陷是由于第二轮中AGAMOUS(AG)的异常表达所致。与其在维持AG表达空间边界中的作用一致,rbe增强了ap2 - 1、lug - 1和clf - 2突变体中存在的第二轮缺陷。在第二轮器官的发育中,RBE在与异常花器官(UFO)相同的途径中且在其下游发挥作用。ap2 - 2 rbe - 3、ant - 4 rbe - 3和cuc2 - 1 rbe - 3双突变体中第一轮器官融合增强,这支持了RBE在器官分离中的额外作用。因此,RBE在幼花中起到维持两种不同类型空间边界的作用:轮内器官原基之间的边界以及轮间同源异型基因表达的边界。