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Quantitative changes in microtubule distribution correlate with guard cell function in Arabidopsis.

机译:拟南芥中微管分布的数量变化与保卫细胞功能有关。

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Radially arranged cortical microtubules are a prominent feature of guard cells. We observed guard cells expressing GFP-tubulin (GFP-TUA6) with confocal microscopy and found recognizable changes in the appearance of microtubules when stomata open or close (Eisinger et al., 2012). In the present study, analysis of fluorescence distribution showed a dramatic increase in peak intensities of microtubule bundles within guard cells as stomata open. This increase was correlated with an increase in the total fluorescence that could be attributed to polymerized tubulin. Adjacent pavement cells did not show similar changes in peak intensities or integrated fluorescence when stomatal apertures changed. Imaging of RFP-tagged end binding protein 1 (EB1) and YFP-tagged alpha -tubulin expressed in the same cell revealed that the number of microtubules with growing ends remained constant, although the total amount of polymerized tubulin was higher in open than in closed guard cells. Taken together, these results indicate that the changes in microtubule array organization that are correlated with and required for normal guard cell function are characterized by changes in microtubule clustering or bundling.
机译:放射状排列的皮质微管是保卫细胞的显着特征。我们用共聚焦显微镜观察了表达GFP-微管蛋白(GFP-TUA6)的保卫细胞,发现当气孔打开或关闭时,微管的外观出现了可识别的变化(Eisinger et al。,2012)。在本研究中,对荧光分布的分析表明,随着气孔开放,保卫细胞内微管束的峰值强度急剧增加。这种增加与可归因于聚合的微管蛋白的总荧光增加有关。当气孔孔径改变时,相邻的铺面细胞在峰值强度或整合的荧光上没有显示出类似的变化。在同一细胞中表达的带有RFP标签的末端结合蛋白1(EB1)和带有YFP标签的α-微管蛋白的成像显示,末端增长的微管数量保持恒定,尽管敞开的聚合微管蛋白的总量高于封闭的微管蛋白的总量。保护细胞。综上所述,这些结果表明,与正常守卫细胞功能相关和所需的微管阵列组织的变化以微管聚集或捆绑的变化为特征。

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