State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Tai'an 271018, China.
State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Tai'an 271018, China
Plant Physiol. 2018 May;177(1):216-225. doi: 10.1104/pp.17.01722. Epub 2018 Mar 9.
Pollen tube growth is an essential step for successful plant reproduction. Vacuolar trafficking and dynamic organization are important for pollen tube growth; however, the key proteins involved in these processes are not well understood. Here, we report that the ADAPTOR PROTEIN-3 (AP-3) complex and its tonoplast cargo PROTEIN S-ACYL TRANSFERASE10 (PAT10) are critical for pollen tube growth in Arabidopsis (). AP-3 is a heterotetrameric protein complex consisting of four subunits, δ, β, µ, and σ. AP-3 regulates tonoplast targeting of several cargoes, such as PAT10. We show that functional loss of any of the four AP-3 subunits reduces plant fertility. In mutants, pollen development was normal but pollen tube growth was compromised, leading to reduced male transmission. Functional loss of caused a similar reduction in pollen tube growth, suggesting that the tonoplast association of PAT10 mediated by AP-3 is crucial for this process. Indeed, the Ca gradient during pollen tube growth was reduced significantly due to loss of function, consistent with the abnormal targeting of CALCINUERIN B-LIKE2 (CBL2) and CBL3, whose tonoplast association depends on PAT10. Furthermore, we show that the pollen tubes of mutants have vacuoles with simplified tubules and bulbous structures, indicating that AP-3 affects vacuolar organization. Our results demonstrate a role for AP-3 in plant reproduction and provide insights into the role of vacuoles in polarized cell growth.
花粉管生长是植物成功繁殖的关键步骤。液泡运输和动态组织对于花粉管生长很重要;然而,涉及这些过程的关键蛋白还没有被很好地理解。在这里,我们报告说 ADAPTOR PROTEIN-3(AP-3)复合物及其液泡膜 cargo PROTEIN S-ACYL TRANSFERASE10(PAT10)对于拟南芥中的花粉管生长至关重要。AP-3 是一种由四个亚基 δ、β、µ 和 σ组成的异四聚体蛋白复合物。AP-3 调节几种货物的液泡靶向,如 PAT10。我们表明,四个 AP-3 亚基中的任何一个功能丧失都会降低植物的育性。在 突变体中,花粉发育正常,但花粉管生长受损,导致雄性传粉减少。 功能丧失导致花粉管生长相似减少,表明 PAT10 通过 AP-3 介导的液泡结合对于这个过程至关重要。事实上,由于 功能丧失,花粉管生长过程中的 Ca 梯度显著降低,这与钙调蛋白 B 样 2(CBL2)和 CBL3 的异常靶向一致,其液泡结合依赖于 PAT10。此外,我们表明 突变体的花粉管具有简化小管和球茎状结构的液泡,表明 AP-3 影响液泡组织。我们的结果表明 AP-3 在植物繁殖中的作用,并提供了液泡在极化细胞生长中的作用的见解。