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拟南芥SWC6基因发生突变,该基因编码SWR1染色质重塑复合体的一个组分,会加速开花时间并改变叶片和花朵的发育。

Mutations in the Arabidopsis SWC6 gene, encoding a component of the SWR1 chromatin remodelling complex, accelerate flowering time and alter leaf and flower development.

作者信息

Lázaro Ana, Gómez-Zambrano Angeles, López-González Leticia, Piñeiro Manuel, Jarillo Jose A

机构信息

Departamento de Biotecnología, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria-Centro de Biotecnologia y Genómica de Plantas (INIA-UAU), Ctra. de A Coruña, Km 7,5, Madrid 28040, Spain.

出版信息

J Exp Bot. 2008;59(3):653-66. doi: 10.1093/jxb/erm332. Epub 2008 Feb 21.

DOI:10.1093/jxb/erm332
PMID:18296430
Abstract

Mutations affecting the Arabidopsis SWC6 gene encoding a putative orthologue of a component of the SWR1 chromatin remodelling complex in plants have been characterized. swc6 mutations cause early flowering, shortened inflorescence internodes, and altered leaf and flower development. These phenotypic defects resemble those of the photoperiod independent early flowering 1 (pie1) and early in short days 1 (esd1) mutants, also affected in homologues of the SWR1 complex subunits. SWC6 is a ubiquitously expressed nuclear HIT-Zn finger-containing protein, with the highest levels found in pollen. Double mutant analyses suggest that swc6 abolishes the FLC-mediated late-flowering phenotype of plants carrying active alleles of FRI and of mutants of the autonomous pathway. It was found that SWC6 is required for the expression of the FLC repressor to levels that inhibit flowering. However, the effect of swc6 in an flc null background and the down-regulation of other FLC-like/MAF genes in swc6 mutants suggest that flowering inhibition mediated by SWC6 occurs through both FLC- and FLC-like gene-dependent pathways. Both genetic and physical interactions between SWC6 and ESD1 have been demonstrated, suggesting that both proteins act in the same complex. Using chromatin immunoprecipitation, it has been determined that SWC6, as previously shown for ESD1, is required for both histone H3 acetylation and H3K4 trimethylation of the FLC chromatin. Altogether, these results suggest that SWC6 and ESD1 are part of an Arabidopsis SWR1 chromatin remodelling complex involved in the regulation of diverse aspects of plant development, including floral repression through the activation of FLC and FLC-like genes.

摘要

影响拟南芥SWC6基因的突变已得到鉴定,该基因编码植物中SWR1染色质重塑复合体一个组分的假定直系同源物。swc6突变导致早花、花序节间缩短以及叶片和花发育改变。这些表型缺陷类似于光周期不依赖早花1(pie1)和短日照早花1(esd1)突变体,它们在SWR1复合体亚基的同源物中也受到影响。SWC6是一种普遍表达的含核HIT锌指蛋白,在花粉中含量最高。双突变分析表明,swc6消除了携带FRI活性等位基因和自主途径突变体的植物中FLC介导的晚花表型。研究发现,SWC6是FLC阻遏物表达至抑制开花水平所必需的。然而,swc6在flc缺失背景下的作用以及swc6突变体中其他FLC样/MAF基因的下调表明,SWC6介导的开花抑制通过FLC和FLC样基因依赖的途径发生。已证明SWC6与ESD1之间存在遗传和物理相互作用,表明这两种蛋白在同一复合体中起作用。利用染色质免疫沉淀技术已确定,如先前对ESD1的研究所示,SWC6是FLC染色质组蛋白H3乙酰化和H3K4三甲基化所必需的。总之,这些结果表明,SWC6和ESD1是拟南芥SWR1染色质重塑复合体的一部分,参与植物发育多个方面的调控,包括通过激活FLC和FLC样基因来抑制开花。

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