首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic Analysis of Early Flowering Mutants in Arabidopsis Defines a Class of Pleiotropic Developmental Regulator Required for Expression of the Flowering-Time Switch Flowering Locus C
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Genetic Analysis of Early Flowering Mutants in Arabidopsis Defines a Class of Pleiotropic Developmental Regulator Required for Expression of the Flowering-Time Switch Flowering Locus C

机译:拟南芥中早期开花突变体的遗传分析定义了一类多亲的发育调控因子,用于表达开花时间开关开花基因座C

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The Arabidopsis flowering-repressor gene FLOWERING LOCUS C ( FLC ) is a developmental switch used to trigger floral induction after extended growth in the cold, a process termed vernalization. In vernalized plants, FLC becomes transcriptionally silenced through a process that involves an epigenetic mechanism. We identified recessive mutations designated vernalization independence ( vip ) that confer cold-independent flowering and suppression of FLC . These mutations also lead to developmental pleiotropy, including specific defects in floral morphology, indicating that the associated genes also have functions unrelated to flowering time. We identified the VIP3 gene by positional cloning and found that it encodes a protein consisting almost exclusively of repeated Trp-Asp (WD) motifs, suggesting that VIP3 could act as a platform to assemble a protein complex. Constitutive transgenic expression of VIP3 in vernalized plants is insufficient to activate FLC , and thus VIP3 probably participates in the regulation of FLC as one component of a more extensive mechanism. Consistent with this, genetic analyses revealed that the VIP loci define a functional gene class including at least six additional members. We suggest that VIP3 and other members of this gene class could represent a previously unrecognized flowering mechanism.
机译:拟南芥开花阻遏物基因FLOWERING LOCUS C(FLC)是一种发育开关,用于在寒冷条件下长时间生长后触发花诱导,这一过程被称为春化。在春化植物中,FLC通过涉及表观遗传机制的过程在转录上沉默。我们确定了隐性突变,称为隐性突变,赋予春化独立性(vip),可赋予非冷性开花和抑制FLC。这些突变还导致发育多效性,包括花卉形态上的特定缺陷,表明相关基因也具有与开花时间无关的功能。我们通过位置克隆鉴定了VIP3基因,发现它编码的蛋白质几乎完全由重复的Trp-Asp(WD)图案组成,表明VIP3可以充当组装蛋白质复合物的平台。 VIP3在春化植物中的组成型转基因表达不足以激活FLC,因此VIP3作为更广泛机制的一个组成部分可能参与FLC的调控。与此一致的是,遗传分析表明,VIP基因座定义了一个功能基因类别,包括至少六个其他成员。我们建议VIP3和此基因类的其他成员可能代表以前无法识别的开花机制。

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