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Cytoplasmic Streaming Velocity as a Plant Size Determinant

机译:细胞质流速度作为植物大小的决定因素

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Cytoplasmic streaming is active transport widely occurring in plant cells ranging from algae to angiosperms. Although it has been revealed that cytoplasmic streaming is generated by organelle-associated myosin XI moving along actin bundles, the fundamental function in plants remains unclear. We generated high- and low-speed chimeric myosin XI by replacing the motor domains of Arabidopsis thaliana myosin XI-2 with those of Chara corallina myosin XI and Homo sapiens myosin Vb, respectively. Surprisingly, the plant sizes of the transgenic. Arabidopsis expressing high- and low-speed chimeric myosin XI-2 were larger and smaller, respectively, than that of the wild-type plant. This size change correlated with acceleration and deceleration, respectively, of cytoplasmic streaming. Our results strongly suggest that cytoplasmic streaming is a key determinant of plant size. Furthermore, because cytoplasmic streaming is a common system for intracellular transport in plants, our system could have applications in artificial size control in plants.
机译:细胞质流是广泛存在于植物细胞中的主动运输,范围从藻类到被子植物。尽管已经揭示了细胞质流是由沿着肌动蛋白束移动的细胞器相关的肌球蛋白XI产生的,但尚不清楚植物中的基本功能。通过分别用拟南芥珊瑚肌球蛋白XI和智人肌球蛋白Vb取代拟南芥肌球蛋白XI-2的运动域,我们生成了高速和低速嵌合肌球蛋白XI。令人惊讶的是,转基因的植物大小。表达高和低速嵌合肌球蛋白XI-2的拟南芥分别比野生型植物大和小。这种大小变化分别与细胞质流的加速和减速相关。我们的结果强烈表明,细胞质流是决定植物大小的关键因素。此外,由于细胞质流传输是植物中细胞内运输的常见系统,因此我们的系统可以应用于植物的人工大小控制。

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