Choi Kyuha, Kim Sanghee, Kim Sang Yeol, Kim Minsoo, Hyun Youbong, Lee Horim, Choe Sunghwa, Kim Sang-Gu, Michaels Scott, Lee Ilha
Department of Biological Sciences, Seoul National University, Seoul 151-742, Korea.
Plant Cell. 2005 Oct;17(10):2647-60. doi: 10.1105/tpc.105.035485. Epub 2005 Sep 9.
Flowering traits in winter annual Arabidopsis thaliana are conferred mainly by two genes, FRIGIDA (FRI) and FLOWERING LOCUS C (FLC). FLC acts as a flowering repressor and is regulated by multiple flowering pathways. We isolated an early-flowering mutant, suppressor of FRIGIDA3 (suf3), which also shows leaf serration, weak apical dominance, and infrequent conversion of the inflorescence shoot to a terminal flower. The suf3 mutation caused a decrease in the transcript level of FLC in both a FRI-containing line and autonomous pathway mutants. However, suf3 showed only a partial reduction of FLC transcript level, although it largely suppressed the late-flowering phenotype. In addition, the suf3 mutation caused acceleration of flowering in both 35S-FLC and a flc null mutant, indicating that SUF3 regulates additional factor(s) for the repression of flowering. SUF3 is highly expressed in the shoot apex, but the expression is not regulated by FRI, autonomous pathway genes, or vernalization. SUF3 encodes the nuclear ACTIN-RELATED PROTEIN6 (ARP6), the homolog of which in yeast is a component of an ATP-dependent chromatin-remodeling SWR1 complex. Our analyses showed that SUF3 regulates FLC expression independent of vernalization, FRI, and an autonomous pathway gene, all of which affect the histone modification of FLC chromatin. Subcellular localization using a green fluorescent protein fusion showed that Arabidopsis ARP6 is located at distinct regions of the nuclear periphery.
冬季一年生拟南芥的开花性状主要由两个基因决定,即FRIGIDA(FRI)和开花位点C(FLC)。FLC作为开花抑制因子,受多种开花途径调控。我们分离出一个早花突变体,即FRI抑制子3(suf3),它还表现出叶片锯齿状、顶端优势减弱以及花序轴很少转变为顶花。suf3突变导致含FRI品系和自主途径突变体中FLC的转录水平降低。然而,尽管suf3很大程度上抑制了晚花表型,但它仅使FLC转录水平部分降低。此外,suf3突变导致35S - FLC和flc缺失突变体的开花均加速,这表明SUF3调控着其他抑制开花的因子。SUF3在茎尖高度表达,但其表达不受FRI、自主途径基因或春化作用的调控。SUF3编码核肌动蛋白相关蛋白6(ARP6),其在酵母中的同源物是ATP依赖性染色质重塑SWR1复合物的一个组分。我们的分析表明,SUF3独立于春化作用、FRI和自主途径基因调控FLC表达,而这些因素均影响FLC染色质的组蛋白修饰。利用绿色荧光蛋白融合进行的亚细胞定位表明,拟南芥ARP6定位于核周的不同区域。