首页> 外文期刊>Frontiers in Plant Science >Direct Comparison of the Performance of Commonly Employed In Vivo F-actin Markers (Lifeact-YFP, YFP-mTn and YFP-FABD2) in Tobacco Pollen Tubes
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Direct Comparison of the Performance of Commonly Employed In Vivo F-actin Markers (Lifeact-YFP, YFP-mTn and YFP-FABD2) in Tobacco Pollen Tubes

机译:烟草花粉管中常用的体内 F-肌动蛋白标记物(Lifeact-YFP,YFP-mTn和YFP-FABD2)性能的直接比较

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In vivo markers for F-actin organization and dynamics are extensively used to investigate cellular functions of the actin cytoskeleton, which are essential for plant development and pathogen defense. The most widely employed markers are GFP variants fused to F-actin binding domains of mouse talin (GFP-mTn), Arabidopsis fimbrin1 (GFP-FABD2) or yeast Abp140 (Lifeact-GFP). Although numerous reports describing applications of one, or occasionally more, of these markers, are available in the literature, a direct quantitative comparison of the performance of all three markers at different expression levels has been missing. Here, we analyze F-actin organization and growth rate displayed by tobacco pollen tubes expressing YFP-mTn, YFP-FABD2 or Lifeact-YFP at different levels. Results obtained establish that: (1) all markers strongly affect F-actin organization and cell expansion at high expression levels, (2) YFP-mTn and Lifeact-YFP non-invasively label the same F-actin structures (longitudinally oriented filaments in the shank, a subapical fringe) at low expression levels, (3) Lifeact-YFP displays a somewhat lower potential to affect F-actin organization and cell expansion than YFP-mTn, and (4) YFP-FABD2 generally fails to label F-actin structures at the pollen tube tip and affects F-actin organization as well as cell expansion already at lowest expression levels. As pointed out in the discussion, these observations (1) are also meaningful for F-actin labeling in other cell types, which generally respond less sensitively to F-actin perturbation than pollen tubes, (2) help selecting suitable markers for future F-actin labeling experiments, and (3) support the assessment of a substantial amount of published data resulting from such experiments.
机译:F-肌动蛋白组织和动力学的体内标记广泛用于研究肌动蛋白细胞骨架的细胞功能,这对于植物发育和病原体防御至关重要。使用最广泛的标记是与小鼠talin(GFP-mTn),拟南芥fimbrin1(GFP-FABD2)或酵母Abp140(Lifeact-GFP)的F-肌动蛋白结合域融合的GFP变体。尽管文献中提供了大量描述一种或偶尔使用这些标记的应用的报告,但仍缺少直接定量比较这三种标记在不同表达水平下的性能的信息。在这里,我们分析了不同水平表达YFP-mTn,YFP-FABD2或Lifeact-YFP的烟草花粉管显示的F-肌动蛋白组织和生长速率。获得的结果表明:(1)所有标记物均以高表达水平强烈影响F-肌动蛋白的组织和细胞扩增,(2)YFP-mTn和Lifeact-YFP非侵入性地标记相同的F-肌动蛋白结构(在细胞中纵向取向的细丝) (3)Lifeact-YFP显示出比FFP-mTn更低的影响F-actin组织和细胞扩张的潜力,(4)YFP-FABD2通常无法标记F-actin花粉管尖端的结构,并影响F-肌动蛋白的组织以及已经达到最低表达水平的细胞扩增。正如讨论中所指出的,这些观察结果(1)对于其他类型细胞中的F-肌动蛋白标记也很有意义,这些细胞通常对F-肌动蛋白的干扰反应不如花粉管敏感,(2)帮助选择合适的标记物用于将来的F-肌动蛋白标记实验,以及(3)支持对此类实验产生的大量公开数据进行评估。

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