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Cytoplasmic Nucleation and Atypical Branching Nucleation Generate Endoplasmic Microtubules in Physcomitrella patens

机译:细胞质成核和非典型分支成核可在小立碗藓中产生内质微管

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The mechanism underlying microtubule (MT) generation in plants has been primarily studied using the cortical MT array, in which fixed-angled branching nucleation and katanin-dependent MT severing predominate. However, little is known about MT generation in the endoplasm. Here, we explored the mechanism of endoplasmic MT generation in protonemal cells of Physcomitrella patens. We developed an assay that utilizes flow cell and oblique illumination fluorescence microscopy, which allowed visualization and quantification of individual MT dynamics. MT severing was infrequently observed, and disruption of katanin did not severely affect MT generation. Branching nucleation was observed, but it showed markedly variable branch angles and was occasionally accompanied by the transport of nucleated MTs. Cytoplasmic nucleation at seemingly random locations was most frequently observed and predominated when depolymerized MTs were regrown. The MT nucleator gamma-tubulin was detected at the majority of the nucleation sites, at which a single MT was generated in random directions. When gamma-tubulin was knocked down, MT generation was significantly delayed in the regrowth assay. However, nucleation occurred at a normal frequency in steady state, suggesting the presence of a gamma-tubulin-independent backup mechanism. Thus, endoplasmic MTs in this cell type are generated in a less ordered manner, showing a broader spectrum of nucleation mechanisms in plants.
机译:最初已经使用皮质MT阵列研究了植物中微管(MT)生成的机制,其中固定角度的分支成核作用和依赖于katanin的MT切断占主导地位。然而,对于内质中MT的产生知之甚少。在这里,我们探讨了内生假单胞菌前质细胞内质MT生成的机制。我们开发了一种利用流动池和倾斜照明荧光显微镜的检测方法,该方法可以对单个MT动态进行可视化和量化。很少观察到MT的切断,并且katanin的破坏并没有严重影响MT的产生。观察到分支成核,但它显示出明显的分支角,并偶尔伴随有核MT的运输。当解聚的MTs重新长大时,在看似随机的位置上最常观察到细胞质成核并占主导地位。在大多数成核位点检测到MT成核剂γ-微管蛋白,在这些成核位点上沿随机方向生成了一个MT。当γ-微管蛋白被敲低时,MT的产生在再生试验中显着延迟。但是,成核在稳态下以正常频率发生,这表明存在不依赖γ-微管蛋白的备用机制。因此,这种细胞类型的内质性MTs产生的顺序较少,显示出植物中较宽范围的成核机制。

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