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Mutations in AtPS1 (Arabidopsis thaliana Parallel Spindle 1) Lead to the Production of Diploid Pollen Grains

机译:AtPS1(拟南芥平行纺锤体1)中的突变导致产生二倍体花粉粒

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摘要

Polyploidy has had a considerable impact on the evolution of many eukaryotes, especially angiosperms. Indeed, most—if not all—angiosperms have experienced at least one round of polyploidy during the course of their evolution, and many important crop plants are current polyploids. The occurrence of 2n gametes (diplogametes) in diploid populations is widely recognised as the major source of polyploid formation. However, limited information is available on the genetic control of diplogamete production. Here, we describe the isolation and characterisation of the first gene, AtPS1 (Arabidopsis thaliana Parallel Spindle 1), implicated in the formation of a high frequency of diplogametes in plants. Atps1 mutants produce diploid male spores, diploid pollen grains, and spontaneous triploid plants in the next generation. Female meiosis is not affected in the mutant. We demonstrated that abnormal spindle orientation at male meiosis II leads to diplogamete formation. Most of the parent's heterozygosity is therefore conserved in the Atps1 diploid gametes, which is a key issue for plant breeding. The AtPS1 protein is conserved throughout the plant kingdom and carries domains suggestive of a regulatory function. The isolation of a gene involved in diplogamete production opens the way for new strategies in plant breeding programmes and progress in evolutionary studies.
机译:多倍体对许多真核生物,尤其是被子植物的进化有相当大的影响。的确,大多数(如果不是全部的话)血管瘤在进化过程中至少经历了一轮多倍体发育,许多重要的农作物是目前的多倍体。在二倍体种群中2n配子(双配子)的发生被广泛认为是多倍体形成的主要来源。但是,关于双谷酰胺生产的遗传控制的信息有限。在这里,我们描述了第一个基因AtPS1(拟南芥平行纺锤体1)的分离和表征,该基因牵涉植物中双谷氨酰胺的高频率形成。 Atps1突变体在下一代中产生二倍体雄性孢子,二倍体花粉粒和自发三倍体植物。女性减数分裂在突变体中不受影响。我们证明了在雄性减数分裂II上异常的纺锤定向会导致双logomete形成。因此,大多数亲本的杂合性在Atps1二倍体配子中得以保留,这是植物育种的关键问题。 AtPS1蛋白在整个植物界都是保守的,并带有暗示调节功能的结构域。涉及双logomete生产的基因的分离为植物育种计划的新策略和进化研究的进展开辟了道路。

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