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The role of microtubules in rapid hyphal tip growth of Aspergillus nidulans

机译:微管在构巢曲霉快速菌丝尖端生长中的作用

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The filamentous fungus Aspergillus nidulans grows by polarized extension of hyphal tips. The actin cytoskeleton is essential for polarized growth, but the role of microtubules has been controversial. To define the role of microtubules in tip growth, we used time-lapse microscopy to measure tip growth rates in germlings of A. nidulans and in multinucleate hyphal tip cells, and we used a green fluorescent protein-alpha-tubulin fusion to observe the effects of the antimicrotubule agent benomyl. Hyphal tip cells grew approximate to 5 times faster than binucleate germlings. In germlings, cytoplasmic microtubules disassembled completely in mitosis. In hyphal tip cells, however, microtubules disassembled through most of the cytoplasm in mitosis but persisted in a region near the hyphal tip. The growth rate of hyphal tip cells did not change significantly in mitosis. Benomyl caused rapid disassembly of microtubules in tip cells and a 10x reduction in growth rate. When benomyl was washed out, microtubules assembled quickly and rapid tip growth resumed. These results demonstrate that although microtubules are not strictly required for polarized growth, they are rate-limiting for the growth of hyphal tip cells. These data also reveal that A. nidulans exhibits a remarkable spatial regulation of microtubule disassembly within hyphal tip cells.
机译:丝状真菌构巢曲霉通过菌丝尖端的极化延伸而生长。肌动蛋白的细胞骨架对于极化生长至关重要,但微管的作用一直存在争议。为了定义微管在尖端生长中的作用,我们使用延时显微镜来测量构巢曲霉和多核菌丝尖端细胞的尖端生长速率,并使用绿色荧光蛋白-α-微管蛋白融合物观察其作用。抗微管剂苯菌灵。菌丝顶端细胞的生长速度比双核幼芽快5倍。在幼苗中,细胞质微管在有丝分裂中完全分解。然而,在菌丝尖端细胞中,微管在有丝分裂中通过大部分细胞质分解,但在菌丝尖端附近的区域中持续存在。丝裂中菌丝尖端细胞的生长速率没有明显变化。苯菌灵导致尖端细胞中的微管快速分解,并使生长速率降低10倍。洗净苯菌灵后,微管迅速组装,尖端恢复快速生长。这些结果表明,尽管微管不是极化生长所必需的,但它们是菌丝尖端细胞生长的速率限制。这些数据还表明构巢曲霉在菌丝尖端细胞内表现出显着的微管拆卸空间调节。

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