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Diel Growth Cycle of Isolated Leaf Discs Analyzed with a Novel, High-Throughput Three-Dimensional Imaging Method Is Identical to That of Intact Leaves1[W]

机译:一种新颖的高通量三维成像方法分析离体叶片的Diel生长周期与完整叶片的相同[W]

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摘要

Dicot leaves grow with pronounced diel (24-h) cycles that are controlled by a complex network of factors. It is an open question to what extent leaf growth dynamics are controlled by long-range or by local signals. To address this question, we established a stereoscopic imaging system, GROWSCREEN 3D, which quantifies surface growth of isolated leaf discs floating on nutrient solution in wells of microtiter plates. A total of 458 leaf discs of tobacco (Nicotiana tabacum) were cut at different developmental stages, incubated, and analyzed for their relative growth rates. The camera system was automatically displaced across the array of leaf discs; visualization and camera displacement took about 12 s for each leaf disc, resulting in a time interval of 1.5 h for consecutive size analyses. Leaf discs showed a comparable diel leaf growth cycle as intact leaves but weaker peak growth activity. Hence, it can be concluded that the timing of leaf growth is regulated by local rather than by systemic control processes. This conclusion was supported by results from leaf discs of Arabidopsis (Arabidopsis thaliana) Landsberg erecta wild-type plants and starch-free1 mutants. At night, utilization of transitory starch leads to increased growth of Landsberg erecta wild-type discs compared with starch-free1 discs. Moreover, the decrease of leaf disc growth when exposed to different concentrations of glyphosate showed an immediate dose-dependent response. Our results demonstrate that a dynamic leaf disc growth analysis as we present it here is a promising approach to uncover the effects of internal and external cues on dicot leaf development.
机译:双子叶植物叶片以明显的diel(24-h)周期生长,该周期由复杂的因素网络控制。一个开放的问题是,叶片生长动态在多大程度上受远程或局部信号控制。为了解决这个问题,我们建立了一个立体成像系统GROWSCREEN 3D,该系统可量化漂浮在微量滴定板孔中营养液上的孤立叶盘的表面生长。在不同的发育阶段切下总共458片烟草叶盘(Nicotiana tabacum),进行孵育,并分析其相对生长速率。摄像机系统自动移到整个叶片盘上。每个叶盘的可视化和照相机位移大约需要12 s,导致连续大小分析的时间间隔为1.5 h。叶盘显示出与完整叶相当的diel叶生长周期,但峰值生长活性较弱。因此,可以得出结论,叶片生长的时机是由局部而不是系统的控制过程来调节的。拟南芥(Landsberg erecta)野生型植物和无淀粉突变体的叶盘结果支持了这一结论。在晚上,与不含淀粉的圆盘相比,瞬时淀粉的利用导致Landsberg erecta野生型圆盘的生长增加。此外,当暴露于不同浓度的草甘膦时,叶盘生长的减少显示出即时的剂量依赖性反应。我们的结果表明,如本文所述,动态叶盘生长分析是揭示内部和外部线索对双子叶植物叶片发育影响的一种有前途的方法。

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