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PRX9 and PRX40 Are Extensin Peroxidases Essential for Maintaining Tapetum and Microspore Cell Wall Integrity during Arabidopsis Anther Development

机译:PRX9和PRX40是拟南芥花药发育过程中维持绒毡层和小孢子细胞壁完整性必不可少的延伸蛋白过氧化物酶。

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摘要

Pollen and microspore development are essential steps in the life cycle of all land plants that generate male gametes. Within flowering plants, pollen development occurs inside of the anther. Here, we report the identification of two class III peroxidase-encoding genes, PEROXIDASE9 (PRX9) and PRX40, that are genetically redundant and essential for proper anther and pollen development in Arabidopsis (Arabidopsis thaliana). Arabidopsis double mutants devoid of functional PRX9 and PRX40 are male sterile. The mutant anthers display swollen, hypertrophic tapetal cells and pollen grains, suggesting disrupted cell wall integrity. These phenotypes lead to nearly 100%-penetrant pollen degeneration upon anther maturation. Using immunochemical and biochemical approaches, we show that PRX9 and PRX40 likely cross-link extensins to contribute to tapetal cell wall integrity during anther development. This work suggests that PRX9 and PRX40 encode Arabidopsis extensin peroxidases and highlights the importance of extensin cross-linking during pollen development.
机译:花粉和小孢子发育是所有产生雄配子的陆地植物生命周期中必不可少的步骤。在开花植物中,花粉发育发生在花药内部。在这里,我们报告鉴定的两个III类过氧化物酶编码基因,PEROXIDASE9(PRX9)和PRX40,它们在遗传上是多余的,对于拟南芥(Arabidopsis thaliana)的花药和花粉发育必不可少。缺乏功能性PRX9和PRX40的拟南芥双突变体是雄性不育的。突变的花药显示出肥大的绒毡层细胞和花粉粒肿胀,表明细胞壁完整性受到破坏。这些表型在花药成熟时导致近100%的渗透性花粉变性。使用免疫化学和生化方法,我们显示PRX9和PRX40可能交联延伸蛋白,以促进花药发育过程中绒毡层细胞壁的完整性。这项工作表明,PRX9和PRX40编码拟南芥属延伸蛋白过氧化物酶,并突出了花粉发育过程中延伸蛋白交联的重要性。

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