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花粉半不育 1 编码一个肌球蛋白-1 样蛋白,对于水稻的雄性减数分裂、花粉开裂和育性很重要。

Pollen semi-sterility1 encodes a kinesin-1-like protein important for male meiosis, anther dehiscence, and fertility in rice.

机构信息

National Key Laboratory for Crop Genetics and Germplasm Enhancement, Jiangsu Plant Gene Engineering Research Center, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Plant Cell. 2011 Jan;23(1):111-29. doi: 10.1105/tpc.109.073692. Epub 2011 Jan 31.

Abstract

In flowering plants, male meiosis produces four microspores, which develop into pollen grains and are released by anther dehiscence to pollinate female gametophytes. The molecular and cellular mechanisms regulating male meiosis in rice (Oryza sativa) remain poorly understood. Here, we describe a rice pollen semi-sterility1 (pss1) mutant, which displays reduced spikelet fertility (40%) primarily caused by reduced pollen viability (50% viable), and defective anther dehiscence. Map-based molecular cloning revealed that PSS1 encodes a kinesin-1-like protein. PSS1 is broadly expressed in various organs, with highest expression in panicles. Furthermore, PSS1 expression is significantly upregulated during anther development and peaks during male meiosis. The PSS1-green fluorescent protein fusion is predominantly localized in the cytoplasm of rice protoplasts. Substitution of a conserved Arg (Arg-289) to His in the PSS1 motor domain nearly abolishes its microtubule-stimulated ATPase activity. Consistent with this, lagging chromosomes and chromosomal bridges were found at anaphase I and anaphase II of male meiosis in the pss1 mutant. Together, our results suggest that PSS1 defines a novel member of the kinesin-1 family essential for male meiotic chromosomal dynamics, male gametogenesis, and anther dehiscence in rice.

摘要

在开花植物中,雄性减数分裂产生四个小孢子,它们发育成花粉粒,并通过花药开裂释放出来,以授粉雌性配子体。调控水稻(Oryza sativa)雄性减数分裂的分子和细胞机制仍知之甚少。在这里,我们描述了一个水稻花粉半不育 1(pss1)突变体,其小穗育性降低(40%)主要是由于花粉活力降低(50%活力)和花药开裂缺陷造成的。基于图谱的分子克隆表明,PSS1 编码一种驱动蛋白-1 样蛋白。PSS1 在各种器官中广泛表达,在穗中表达最高。此外,PSS1 的表达在花药发育过程中显著上调,并在雄性减数分裂期间达到峰值。PSS1-绿色荧光蛋白融合主要定位于水稻原生质体的细胞质中。在 PSS1 马达结构域中保守的 Arg(Arg-289)突变为 His 几乎完全消除了其微管刺激的 ATP 酶活性。与此一致,在 pss1 突变体中,减数分裂 I 期和减数分裂 II 期的后期可以发现滞后染色体和染色体桥。综上所述,我们的结果表明,PSS1 定义了驱动蛋白-1 家族的一个新成员,该成员对于水稻雄性减数分裂染色体动力学、雄性配子发生和花药开裂是必不可少的。

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