Center for Plant Biology, School of Life Sciences, Tsinghua University, Beijing, 100084, China.
Plant J. 2017 Nov;92(3):509-519. doi: 10.1111/tpj.13668. Epub 2017 Sep 26.
Dynamic assembly and disassembly of the actin cytoskeleton has been implicated in the regulation of pollen germination and subsequent tube growth. It is widely accepted that actin filaments are arrayed into distinct structures within different regions of the pollen tube. Maintenance of the equilibrium between monomeric globular actin (G-actin) and filamentous actin (F-actin) is crucial for actin assembly and array construction, and the local concentration of G-actin thus directly impacts actin assembly. The localization and dynamics of G-actin in the pollen tube, however, remain to be determined conclusively. To address this question, we created a series of fusion proteins between green fluorescent protein (GFP) and the Arabidopsis reproductive actin ACT11. Expression of a fusion protein with GFP inserted after methionine at position 49 within the DNase I-binding loop of ACT11 (GFP -ACT11) rescued the phenotypes in act11 mutants. Consistent with the notion that the majority of actin is in its monomeric form, GFP -ACT11 and GFP fusion proteins of four other reproductive actins generated with the same strategy do not obviously label filamentous structures. In further support of the functionality of these fusion proteins, we found that they can be incorporated into filamentous structures in jasplakinolide (Jasp)-treated pollen tubes. Careful observations showed that G-actin is distributed uniformly in the pollen tube and is rapidly redistributed via cytoplasmic streaming during pollen tube growth. Our study suggests that G-actin is readily available in the cytoplasm to support continuous actin polymerization during rapid pollen tube growth.
肌动蛋白细胞骨架的动态组装和拆卸与花粉萌发和随后的管生长的调节有关。人们普遍认为,肌动蛋白丝在花粉管的不同区域排列成不同的结构。单体球状肌动蛋白(G-actin)和丝状肌动蛋白(F-actin)之间平衡的维持对于肌动蛋白组装和排列结构的构建至关重要,因此 G-actin 的局部浓度直接影响肌动蛋白组装。然而,花粉管中 G-actin 的定位和动态仍有待确定。为了解决这个问题,我们创建了一系列绿色荧光蛋白(GFP)与拟南芥生殖肌动蛋白 ACT11 之间的融合蛋白。在 ACT11 的 DNase I 结合环中第 49 位甲硫氨酸之后插入 GFP 的融合蛋白(GFP-ACT11)的表达挽救了 act11 突变体的表型。与大多数肌动蛋白处于单体形式的观点一致,用相同策略生成的 GFP-ACT11 和另外四种生殖肌动蛋白的 GFP 融合蛋白并未明显标记丝状结构。进一步支持这些融合蛋白的功能,我们发现它们可以被整合到 Jasplakinolide(Jasp)处理的花粉管中的丝状结构中。仔细观察表明,G-actin 在花粉管中均匀分布,并在花粉管生长过程中通过细胞质流快速重新分布。我们的研究表明,G-actin 在细胞质中很容易获得,以支持快速花粉管生长过程中的连续肌动蛋白聚合。