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Mutations in LIKE HETEROCHROMATIN PROTEIN 1 affect flowering time and plant architecture in Arabidopsis.

机译:像杂色氨酸蛋白1中的突变会影响拟南芥的开花时间和植物结构。

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In plants, recent studies have demonstrated links between the regulation of developmental processes and chromatin dynamics and organisation. Analysis of new mutations affecting overall plant architecture, leaf development and flowering time in Arabidopsis has allowed us to clone and characterise LHP1, the Drosophila heterochromatin protein 1 (HP1) homologue. LHP1 has the chromo and chromo shadow domains central to the function of animal proteins. Yeast two hybrid studies and in planta deletion experiments suggest similar modes of action in plants and animals via homodimer formation. In vivo localisation experiments revealed a specific subnuclear protein distribution in foci throughout the nucleus. Our data suggest that LHP1 may act as a main regulator of gene expression in plants, through formation of heterochromatin-like repressive complexes, to control developmental pathways involved in organ and cell size, and the vegetative to reproductive phase transition.
机译:在植物中,最近的研究证明了发育过程的调节与染色质动力学和组织之间的联系。分析影响拟南芥属植物整体结构,叶片发育和开花时间的新突变,使我们能够克隆和鉴定果蝇异染色质蛋白1(HP1)同源物LHP1。 LHP1具有对动物蛋白功能至关重要的染色体和染色体阴影域。酵母的两个杂交研究和植物缺失实验表明,通过同型二聚体形成,在动植物中具有相似的作用方式。体内定位实验揭示了整个核内灶中特定的亚核蛋白分布。我们的数据表明,LHP1可能通过形成异染色质样阻遏复合物,来控制植物中基因表达的主要调控因子,从而控制器官和细胞大小以及无性繁殖到生殖阶段过渡的发育途径。

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