首页> 美国卫生研究院文献>The Plant Cell >The Nuclear Actin-Related Protein ARP6 Is a Pleiotropic Developmental Regulator Required for the Maintenance of FLOWERING LOCUS C Expression and Repression of Flowering in Arabidopsis
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The Nuclear Actin-Related Protein ARP6 Is a Pleiotropic Developmental Regulator Required for the Maintenance of FLOWERING LOCUS C Expression and Repression of Flowering in Arabidopsis

机译:核肌动蛋白相关蛋白ARP6是维持拟南芥中的开花LOC表达和抑制开花的多亲发育调节剂。

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摘要

Actin-related proteins (ARPs) are found in the nuclei of all eukaryotic cells, but their functions are generally understood only in the context of their presence in various yeast and animal chromatin-modifying complexes. Arabidopsis thaliana ARP6 is a clear homolog of other eukaryotic ARP6s, including Saccharomyces cerevisiae ARP6, which was identified as a component of the SWR1 chromatin remodeling complex. We examined the subcellular localization, expression patterns, and loss-of-function phenotypes for this protein and found that Arabidopsis ARP6 is localized to the nucleus during interphase but dispersed away from the chromosomes during cell division. ARP6 expression was observed in all vegetative tissues as well as in a subset of reproductive tissues. Null mutations in ARP6 caused numerous defects, including altered development of the leaf, inflorescence, and flower as well as reduced female fertility and early flowering in both long- and short-day photoperiods. The early flowering of arp6 mutants was associated with reduced expression of the central floral repressor gene FLOWERING LOCUS C (FLC) as well as MADS AFFECTING FLOWERING 4 (MAF4) and MAF5. In addition, arp6 mutations suppress the FLC-mediated late flowering of a FRIGIDA-expressing line, indicating that ARP6 is required for the activation of FLC expression to levels that inhibit flowering. These results indicate that ARP6 acts in the nucleus to regulate plant development, and we propose that it does so through modulation of chromatin structure and the control of gene expression.
机译:肌动蛋白相关蛋白(ARPs)存在于所有真核细胞的细胞核中,但通常仅在它们存在于各种酵母和动物染色质修饰复合物中的情况下才能理解它们的功能。拟南芥ARP6是其他真核ARP6(包括酿酒酵母ARP6)的明确同源物,被鉴定为SWR1染色质重塑复合物的组成部分。我们检查了该蛋白的亚细胞定位,表达模式和功能丧失表型,发现拟南芥ARP6在相间定位于细胞核,但在细胞分裂过程中却分散在染色体之外。在所有营养组织以及一部分生殖组织中均观察到ARP6表达。 ARP6的无效突变导致许多缺陷,包括在长日照和短日照期间叶片的发育,花序和花的发育改变,以及雌性生育力下降和早期开花。 arp6突变体的早期开花与中央花卉抑制基因FLOWERING LOCUS C(FLC)以及MADS AFFECTING FLOWERING 4(MAF4)和MAF5的表达降低有关。另外,arp6突变抑制了表达FRIGIDA的品系的FLC介导的晚期开花,表明ARP6是激活FLC表达至抑制开花所需的。这些结果表明,ARP6在细胞核中起着调节植物发育的作用,我们建议通过调节染色质结构和控制基因表达来发挥作用。

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