Key Laboratory of Plant Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.
Plant Cell. 2013 May;25(5):1803-17. doi: 10.1105/tpc.113.110940. Epub 2013 May 28.
Apical actin filaments are crucial for pollen tube tip growth. However, the specific dynamic changes and regulatory mechanisms associated with actin filaments in the apical region remain largely unknown. Here, we have investigated the quantitative dynamic parameters that underlie actin filament growth and disappearance in the apical regions of pollen tubes and identified villin as the major player that drives rapid turnover of actin filaments in this region. Downregulation of Arabidopsis thaliana VILLIN2 (VLN2) and VLN5 led to accumulation of actin filaments at the pollen tube apex. Careful analysis of single filament dynamics showed that the severing frequency significantly decreased, and the lifetime significantly increased in vln2 vln5 pollen tubes. These results indicate that villin-mediated severing is critical for turnover and departure of actin filaments originating in the apical region. Consequently, the construction of actin collars was affected in vln2 vln5 pollen tubes. In addition to the decrease in severing frequency, actin filaments also became wavy and buckled in the apical cytoplasm of vln2 vln5 pollen tubes. These results suggest that villin confers rigidity upon actin filaments. Furthermore, an observed decrease in skewness of actin filaments in the subapical region of vln2 vln5 pollen tubes suggests that villin-mediated bundling activity may also play a role in the construction of actin collars. Thus, our data suggest that villins promote actin turnover at pollen tube tips and facilitate the construction of actin collars.
顶端肌动蛋白丝对于花粉管顶端生长至关重要。然而,顶端区域肌动蛋白丝的具体动态变化和调控机制在很大程度上仍然未知。在这里,我们研究了支持花粉管顶端区域肌动蛋白丝生长和消失的定量动态参数,并确定了 villin 是驱动该区域肌动蛋白丝快速周转的主要参与者。拟南芥 VILLIN2(VLN2)和 VLN5 的下调导致花粉管顶端积累肌动蛋白丝。对单个纤维动力学的仔细分析表明,在 vln2 vln5 花粉管中,切断频率显著降低,寿命显著延长。这些结果表明,villin 介导的切断对于源自顶端区域的肌动蛋白丝的周转和离开至关重要。因此,在 vln2 vln5 花粉管中,肌动蛋白环的构建受到影响。除了切断频率降低外,在 vln2 vln5 花粉管的顶端细胞质中,肌动蛋白丝也变得弯曲和起皱。这些结果表明 villin 赋予肌动蛋白丝刚性。此外,在 vln2 vln5 花粉管的亚顶端区域观察到肌动蛋白丝偏度的降低表明,villin 介导的束集活性也可能在肌动蛋白环的构建中发挥作用。因此,我们的数据表明 villin 促进花粉管顶端的肌动蛋白周转,并有助于肌动蛋白环的构建。