首页> 外文期刊>The Plant Cell >Analysis of cortical arrays from Tradescantia virginiana at high resolution reveals discrete microtubule subpopulations and demonstrates that confocal images of arrays can be misleading
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Analysis of cortical arrays from Tradescantia virginiana at high resolution reveals discrete microtubule subpopulations and demonstrates that confocal images of arrays can be misleading

机译:高分辨率的Trade木皮质阵列的高分辨率分析揭示了离散的微管亚群,并证明阵列的共聚焦图像可能会误导人

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Cortical microtubule arrays are highly organized networks involved in directing cellulose microfibril deposition within the cell wall. Their organization results from complex interactions between individual microtubules and microtubule-associated proteins. The precise details of these interactions are often not evident using optical microscopy. Using high-resolution scanning electron microscopy, we analyzed extensive regions of cortical arrays and identified two spatially discrete microtubule subpopulations that exhibited different stabilities. Microtubules that lay adjacent to the plasma membrane were often bundled and more stable than the randomly aligned, discordant microtubules that lay deeper in the cytoplasm. Immunolabeling revealed katanin at microtubule ends, on curves, or at sites along microtubules in line with neighboring microtubule ends. End binding 1 protein also localized along microtubules, at microtubule ends or junctions between microtubules, and on the plasma membrane in direct line with microtubule ends. We show fine bands in vivo that traverse and may encircle microtubules. Comparing confocal and electron microscope images of fluorescently tagged arrays, we demonstrate that optical images are misleading, highlighting the fundamental importance of studying cortical microtubule arrays at high resolution.
机译:皮质微管阵列是高度组织化的网络,参与引导纤维素微纤维在细胞壁内的沉积。它们的组织是由于单个微管和微管相关蛋白之间复杂的相互作用而产生的。这些相互作用的精确细节通常在光学显微镜下并不明显。使用高分辨率的扫描电子显微镜,我们分析了皮质阵列的广泛区域,并确定了表现出不同稳定性的两个空间离散的微管亚群。与质膜相邻的微管通常被捆扎在一起,并且比在细胞质中更深的随机排列,不一致的微管更稳定。免疫标记揭示了katanin在微管末端,曲线上或沿与邻近微管末端一致的微管部位。末端结合蛋白1也沿微管,在微管末端或微管之间的连接处定位,并在质膜上与微管末端成一直线。我们在体内显示出细带,这些细带会穿过并可能环绕微管。比较荧光标记阵列的共焦和电子显微镜图像,我们证明光学图像具有误导性,突出了研究高分辨率的皮层微管阵列的根本重要性。

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