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首页> 外文期刊>The Plant Cell >Kinesins have a dual function in organizing microtubules during both tip growth and cytokinesis in Physcomitrella patens.
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Kinesins have a dual function in organizing microtubules during both tip growth and cytokinesis in Physcomitrella patens.

机译:驱动蛋白在小立碗藓的尖端生长和胞质分裂过程中具有组织微管的双重功能。

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Microtubules (MTs) play a crucial role in the anisotropic deposition of cell wall material, thereby affecting the direction of growth. A wide range of tip-growing cells display highly polarized cell growth, and MTs have been implicated in regulating directionality and expansion. However, the molecular machinery underlying MT dynamics in tip-growing plant cells remains unclear. Here, we show that highly dynamic MT bundles form cyclically in the polarized expansion zone of the moss Physcomitrella patens caulonemal cells through the coalescence of growing MT plus ends. Furthermore, the plant-specific kinesins (KINID1) that are is essential for the proper MT organization at cytokinesis also regulate the turnover of the tip MT bundles as well as the directionality and rate of cell growth. The plus ends of MTs grow toward the expansion zone, and KINID1 is necessary for the stability of a single coherent focus of MTs in the center of the zone, whose formation coincides with the accumulation of KINID1. We propose that KINID-dependent MT bundling is essential for the correct directionality of growth as well as for promoting growth per se. Our findings indicate that two localized cell wall deposition processes, tip growth and cytokinesis, previously believed to be functionally and evolutionarily distinct, share common and plant-specific MT regulatory components.
机译:微管(MTs)在细胞壁材料的各向异性沉积中起关键作用,从而影响生长方向。各种各样的尖端生长细胞显示出高度极化的细胞生长,并且MT参与调节方向性和扩增。但是,尚不清楚尖端生长的植物细胞中MT动力学的分子机制。在这里,我们显示出高动态MT束通过生长MT +末端的聚结在苔藓小立冬青苔藻Caulonemal细胞的极化扩展区中周期性地形成。此外,对于特定的MT组织在细胞分裂中必不可少的植物特异性驱动蛋白(KINID1)还调节尖端MT束的周转以及细胞生长的方向性和速率。 MTs的正端朝着扩展区生长,而KINID1对于MTs在该区中心的单个相干焦点的稳定性必不可少,其形成与KINID1的积累相吻合。我们建议依赖KINID的MT捆绑对于正确的增长方向以及促进自身增长至关重要。我们的发现表明,以前认为在功能和进化上不同的两个局部细胞壁沉积过程(尖端生长和胞质分裂)具有共同的和特定于植物的MT调节成分。

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