首页> 外文OA文献 >RUPTURED POLLEN GRAIN1, a Member of the MtN3/saliva Gene Family, Is Crucial for Exine Pattern Formation and Cell Integrity of Microspores in Arabidopsis1[C][W][OA]
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RUPTURED POLLEN GRAIN1, a Member of the MtN3/saliva Gene Family, Is Crucial for Exine Pattern Formation and Cell Integrity of Microspores in Arabidopsis1[C][W][OA]

机译:MtN3 /唾液基因家族成员之一的花粉粒破裂1,对于拟南芥中小孢子的外在模式形成和细胞完整性至关重要[C] [W] [OA]

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摘要

During microsporogenesis, the microsporocyte (or microspore) plasma membrane plays multiple roles in pollen wall development, including callose secretion, primexine deposition, and exine pattern determination. However, plasma membrane proteins that participate in these processes are still not well known. Here, we report that a new gene, RUPTURED POLLEN GRAIN1 (RPG1), encodes a plasma membrane protein and is required for exine pattern formation of microspores in Arabidopsis (Arabidopsis thaliana). The rpg1 mutant exhibits severely reduced male fertility with an otherwise normal phenotype, which is largely due to the postmeiotic abortion of microspores. Scanning electron microscopy examination showed that exine pattern formation in the mutant is impaired, as sporopollenin is randomly deposited on the pollen surface. Transmission electron microscopy examination further revealed that the primexine formation of mutant microspores is aberrant at the tetrad stage, which leads to defective sporopollenin deposition on microspores and the locule wall. In addition, microspore rupture and cytoplasmic leakage were evident in the rpg1 mutant, which indicates impaired cell integrity of the mutant microspores. RPG1 encodes an MtN3/saliva family protein that is integral to the plasma membrane. In situ hybridization analysis revealed that RPG1 is strongly expressed in microsporocyte (or microspores) and tapetum during male meiosis. The possible role of RPG1 in microsporogenesis is discussed.
机译:在微孢子发生过程中,微孢子细胞(或小孢子)质膜在花粉壁发育中起多种作用,包括call的分泌,初生素的沉积和外在模式的确定。但是,参与这些过程的质膜蛋白仍然不是很清楚。在这里,我们报告一个新的基因,破裂的花粉粒(RPG1),编码质膜蛋白,是拟南芥(Arabidopsis thaliana)中小孢子的外在模式形成所必需的。 rpg1突变体表现出严重的雄性育性降低,而表型正常,这在很大程度上是由于减数分裂后的小孢子流产。扫描电子显微镜检查显示突变体中外在模式的形成受到损害,因为孢粉是随机沉积在花粉表面上的。透射电子显微镜检查进一步揭示,突变的小孢子的primxine形成在第四阶段是异常的,这导致了孢粉的缺陷孢子在小孢子和小室壁上的沉积。此外,在rpg1突变体中,小孢子破裂和细胞质泄漏很明显,这表明突变体小孢子的细胞完整性受损。 RPG1编码质膜不可缺少的MtN3 /唾液家族蛋白。原位杂交分析表明,RPG1在雄性减数分裂过程中在微孢子细胞(或小孢子)和绒毡层中强烈表达。讨论了RPG1在微孢子发生中的可能作用。

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