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Examining the Behaviour of Fungal Cells in Microconfined Mazelike Structures

机译:检查微约束迷宫状结构中真菌细胞的行为。

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Filamentous fungi like Neurospora crassa are a large and evolutionary successful group of organisms that can efficiently colonise microconfined networks like soil, wood, leaf litter, plant and animal tissues. Growth of the fungus Neurospora crassa was monitored for three-dimensional interactions with artificial profiled surface and two-dimensional interactions with a patterned surface. Specific growth parameters that included branching angles and branching distances were used to measure the responses of growing hyphae to the confining features. In three dimensional microfluidic and mazelike structures, changes in the growth parameters were observed and revealed an exceptional directional memory by growing hyphae that was maintained over long distances. Comparison with data from a previous study using another species revealed that different fungal species exhibit surprisingly specific sets of growth parameters. A second set of experiments showed that Neurospora crassa had a distinct affinity to edges and tips. On a surface covered with microscale pyramids, hyphae balanced on and bridged between tips.
机译:丝状真菌(如Neurospora crassa)是一大类进化成功的生物体,可以有效地定植在土壤,木材,凋落物,植物和动物组织等微约束网络中。监测真菌Neurospora crassa的生长与人造轮廓表面的三维相互作用以及与带图案表面的二维相互作用。包括分支角度和分支距离的特定生长参数用于测量生长菌丝对限制特征的响应。在三维微流体和迷宫状结构中,观察到生长参数的变化,并通过长距离生长的菌丝揭示了异常的方向记忆。与使用其他物种的先前研究数据进行比较后发现,不同的真菌物种表现出令人惊讶的特定生长参数集。第二组实验表明,神经孢霉对边缘和尖端具有独特的亲和力。在覆盖有微型金字塔的表面上,菌丝在尖端之间平衡并桥接。

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