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肌动蛋白在烟草原生质体依赖生长素响应中的感觉作用。

Sensory role of actin in auxin-dependent responses of tobacco BY-2.

机构信息

Botanical Institute, Karlsruhe Institute of Technology, Fritz-Haber-Weg. 4, Gbd. 30.43, (5. OG), 76131 Karlsruhe, Germany.

出版信息

J Plant Physiol. 2017 Nov;218:6-15. doi: 10.1016/j.jplph.2017.07.011. Epub 2017 Jul 19.

Abstract

Polar auxin transport depends on the polar localization of auxin-efflux carriers. The cycling of these carriers between cell interior and plasma membrane depends on actin. The dynamic of actin not only affects auxin transport, but also changes the auxin-responsiveness. To study the potential link between auxin responsiveness and actin dynamics, we investigated developmental responses of the non-transformed BY-2 (Nicotiana tabacum L. cv Bright Yellow 2) cell line and the transgenic BY-2 strain GF11 (stably transformed BY-2 cells with a GFP-fimbrin actin-binding domain 2 construct). The developmental process was divided into three distinct stages: cell cycling, cell elongation and file disintegration. Several phenotypes were measured to monitor the cellular responses to different concentrations of exogenous natural auxin (Indole-3-acetic acid, IAA). We found that auxin stimulated and prolonged the mitotic activity, and delayed the exit from the proliferation phase. However, both responses were suppressed in the GF11 line. At the stationary phase of the cultivation cycle, auxin strongly accelerated the cell file disintegration. Interestingly, it was not suppressed but progressed to a more complete disintegration in the GF11 line. During the cultivation cycle, we also followed the organization of actin in the GF11 line and did not detect any significant difference in actin organization from untreated control or exogenous IAA treatment. Therefore, our findings indicate that the specific differences observed in the GF11 line must be linked with a function of actin that is not structural. It means that there is a sensory role of actin for auxin signaling.

摘要

极性生长素运输依赖于生长素外排载体的极性定位。这些载体在细胞内部和质膜之间的循环依赖于肌动蛋白。肌动蛋白的动态不仅影响生长素运输,还改变生长素的响应性。为了研究生长素响应性和肌动蛋白动力学之间的潜在联系,我们研究了非转化 BY-2(烟草 Nicotiana tabacum L. cv Bright Yellow 2)细胞系和转化 BY-2 株系 GF11(稳定转化的 BY-2 细胞,带有 GFP-fimbrin 肌动蛋白结合结构域 2 构建体)的发育反应。发育过程分为三个不同阶段:细胞循环、细胞伸长和细胞层解体。测量了几种表型来监测细胞对外源天然生长素(吲哚-3-乙酸,IAA)不同浓度的反应。我们发现生长素刺激并延长了有丝分裂活动,并延迟了从增殖阶段退出。然而,这些反应在 GF11 系中均受到抑制。在培养周期的静止阶段,生长素强烈加速了细胞层解体。有趣的是,在 GF11 系中,它不仅没有被抑制,反而进展到更完全的解体。在培养周期中,我们还跟踪了 GF11 系中肌动蛋白的组织,并且没有检测到肌动蛋白组织在未经处理的对照或外源 IAA 处理中与对照组有任何显著差异。因此,我们的发现表明,在 GF11 系中观察到的特定差异必须与肌动蛋白的非结构功能相关。这意味着肌动蛋白在生长素信号转导中具有感应作用。

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