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The plant microtubule-associated protein AtMAP65-3/PLE is essential for cytokinetic phragmoplast function.

机译:植物微管相关蛋白AtMAP65-3 / PLE对细胞动力学的成膜功能至关重要。

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摘要

Directional cell expansion in interphase and nuclear and cell division in M-phase are mediated by four microtubule arrays, three of which are unique to plants: the interphase array, the preprophase band, and the phragmoplast. The plant microtubule-associated protein MAP65 has been identified as a key structural component in these arrays [1]. The Arabidopsis genome has nine MAP65 genes, and here we show that one, AtMAP65-3/PLE, locates only to the mitotic arrays and is essential for cytokinesis. The Arabidopsis pleiade (ple) alleles are single recessive mutations, and we show that these mutations are in the AtMAP65-3 gene. Moreover, these mutations cause C-terminal truncations that abolish microtubule binding. In the ple mutants the anaphase spindle is normal, and the cytokinetic phragmoplast can form but is distorted; not only is it wider, but the midline, the region where oppositely oriented microtubules overlap, is unusually expanded. Here we present data that demonstrate an essential role for AtMAP65-3/PLE in cytokinesis in plant cells.
机译:中间相中的定向细胞扩增和M相中的核分裂和细胞分裂是由四个微管阵列介导的,其中三个是植物特有的:相间阵列,前相前带和原生质体。植物微管相关蛋白MAP65已被鉴定为这些阵列中的关键结构成分[1]。拟南芥基因组具有9个MAP65基因,在这里我们显示一个AtMAP65-3 / PLE仅位于有丝分裂阵列上,是胞质分裂所必需的。拟南芥pleiade(ple)等位基因是单个隐性突变,我们表明这些突变在AtMAP65-3基因中。此外,这些突变导致C末端截短,从而消除了微管结合。在ple突变体中,后期纺锤体是正常的,并且可以形成但不变形的细胞动力学的原生质体。它不仅更宽,而且中线,即方向相反的微管重叠的区域,异常扩展。在这里,我们提供的数据证明了AtMAP65-3 / PLE在植物细胞胞质分裂中的重要作用。

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