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首页> 外文期刊>Cytoskeleton >Intrabundle microtubule dynamics in the Arabidopsis cortical array.
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Intrabundle microtubule dynamics in the Arabidopsis cortical array.

机译:拟南芥皮层阵列中束内微管动力学。

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摘要

We tested the general hypothesis that bundling stabilizes the dynamic properties of the constituent microtubules (MTs) in vivo. We quantified the assembly dynamics of bundled and unbundled MTs in the interphase cortical array of Arabidopsis hypocotyl cells using high dynamic range spinning disk confocal microscopy. We find no evidence that bundled MTs are stabilized against depolymerization through changes to their dynamic properties. Our observations of MT plus and minus ends indicate that both bundled and unbundled polymers undergo persistent treadmilling in this system. We conclude that the temporal persistence of MT subassemblies in the Arabidopsis cortical array is largely dependent upon recruitment or nucleation of new treadmilling MTs and not on polymer stabilization. Monte Carlo simulations suggest that small differences discovered in the dynamic properties between bundled and unbundled polymers would produce relatively small macroscopic effects on the larger MT array.
机译:我们测试了捆绑在体内稳定组成微管(MTs)动态特性的一般假设。我们使用高动态范围旋转盘共聚焦显微镜对拟南芥下胚轴细胞相间皮质阵列中成束和未成束MTs的组装动力学进行了定量。我们发现没有证据表明捆绑的MT可以通过改变其动态特性而稳定地抗解聚。我们对MT的正负两端的观察表明,捆绑的和非捆绑的聚合物都在该系统中进行持续的铣削。我们得出结论,拟南芥皮质阵列中MT子组件的时间持久性在很大程度上取决于新的跑步机MT的募集或成核,而不取决于聚合物的稳定性。蒙特卡洛模拟表明,在成束的和未成束的聚合物之间的动力学性质中发现的细微差异将对较大的MT阵列产生相对较小的宏观影响。

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