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ANXUR1 和 2 是 FERONIA/SIRENE 的姐妹基因,是雄性因子,用于协调受精。

ANXUR1 and 2, sister genes to FERONIA/SIRENE, are male factors for coordinated fertilization.

机构信息

National Institute for Basic Biology, Okazaki 444-8585, Japan.

出版信息

Curr Biol. 2009 Aug 11;19(15):1327-31. doi: 10.1016/j.cub.2009.06.064. Epub 2009 Jul 30.

Abstract

In sexual reproduction, proper communication and cooperation between male and female organs and tissues are essential for male and female gametes to unite. In flowering plants, female sporophytic tissues and gametophytes direct a male pollen tube toward an egg apparatus, which consists of an egg cell and two synergid cells. The cell-cell communication between the pollen tube and the egg apparatus makes the tip of pollen tube rupture to release the sperm cell. To detect male factors involved in this communication, we screened mutants of receptor-like kinases expressed in pollen tubes and characterized ANXUR1 (ANX1) and ANXUR2 (ANX2) genes. Here we report that pollen tubes of anx1/anx2 mutants ruptured before arriving at the egg apparatus, suggesting that ANX1 and ANX2 are male factors controlling pollen tube behavior by directing rupture at proper timing. Furthermore, ANX1 and ANX2 were the most closely related paralogs of a female factor, FERONIA/SIRENE, controlling pollen tube behavior expressed in synergid cells. Our findings show that the coordinated behaviors of female and male reproductive apparatuses are regulated by these sister genes, whose duplication might play a role in the evolution of the fertilization system in flowering plants.

摘要

在有性生殖中,雄性和雌性器官和组织之间的适当交流和配合对于雄性和雌性配子的结合至关重要。在开花植物中,雌性孢子体组织和配子体引导雄性花粉管朝向一个卵器,卵器由一个卵细胞和两个助细胞组成。花粉管和卵器之间的细胞间通讯使花粉管的顶端破裂,释放出精子细胞。为了检测参与这种通讯的雄性因子,我们筛选了在花粉管中表达的受体样激酶的突变体,并对 ANXUR1(ANX1)和 ANXUR2(ANX2)基因进行了特征描述。在这里,我们报告说 anx1/anx2 突变体的花粉管在到达卵器之前就破裂了,这表明 ANX1 和 ANX2 是通过在适当时间指导破裂来控制花粉管行为的雄性因子。此外,ANX1 和 ANX2 是控制在助细胞中表达的雌性因子 FERONIA/SIRENE 控制花粉管行为的最密切相关的同源基因。我们的研究结果表明,雌性和雄性生殖器官的协调行为受这些姐妹基因的调节,它们的复制可能在开花植物受精系统的进化中发挥了作用。

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