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ACTIN IS AN ESSENTIAL COMPONENT OF PLANT GRAVITROPIC SIGNALING PATHWAYS

机译:ACTIN是植物重力信号通路的重要组成部分

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A role of the actin cytoskeleton in the different phases of gravitropism in higher plant organs seems obvious, but experimental evidence is still inconclusive and contradictory. In gravitropically tip-growing rhizoids and protonemata, however, it is well documented that actin is an essential component of the tip-growth machinery and is involved either in the cellular mechanisms that lead to gravity sensing and in the processes of the graviresponses that result in the reorientation of the growth direction. All these processes depend on a complexly organized and highly dynamic organization of actin filaments whose diverse functions are coordinated by numerous associated proteins. Actin filaments and myosins mediate the transport of secretory vesicles to the growing tip and precisely control the delivery of cell wall material. In addition, both cell types use a very efficient actomyosin-based system to control and correct the position of their statoliths and to direct sedimenting statoliths to confined graviperception sites at the plasma membrane. The studies presented in this paper provide evidence for the essential role of actin in plant gravity sensing and the gravitropic responses. A unique actin-organizing center exists in the tip of characean rhizoids and protonemata which is associated with and dynamically regulated by a specific set of actin-dynamizing proteins. It is concluded that this highly dynamic apical actin array is an essential prerequisite for gravity sensing and gravity-oriented tip growth.
机译:肌动蛋白细胞骨架在高等植物器官的重力趋向的不同阶段中的作用似乎是显而易见的,但是实验证据仍是不确定和矛盾的。然而,在重力运动的尖端生长的类根瘤和原发性瘤中,肌动蛋白是尖端生长机制的重要组成部分,并参与导致重力感应的细胞机制以及导致以下情况的重力反应过程:成长方向的重新定位。所有这些过程都依赖于肌动蛋白丝的复杂组织和高度动态的组织,肌动蛋白丝的多种功能由众多相关的蛋白质来协调。肌动蛋白丝和肌球蛋白介导分泌性囊泡向生长尖端的运输,并精确控制细胞壁物质的运输。另外,两种细胞类型都使用非常有效的基于肌动球蛋白的系统来控制和校正其顺层石的位置,并将沉降的顺石层引导至质膜处的狭窄重力感受位。本文介绍的研究为肌动蛋白在植物重力感应和重力反应中的重要作用提供了证据。查理an类根状茎和质子瘤的顶端存在一个独特的肌动蛋白组织中心,该中心与一组特定的肌动蛋白活力蛋白相关并受其动态调节。结论是,这种高度动态的顶端肌动蛋白阵列是重力感应和重力导向的尖端生长的必要先决条件。

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