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Soft but Not Too Soft—How a Rigid Tube Expands without Breaking

机译:柔软但不是太软 - 如何在没有断裂的情况下膨胀

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ABSTRACT Fungi grow by apical extension of their hyphae. The continuous growth requires constant delivery of vesicles, which fuse with the membrane and secrete cell wall biosynthesis enzymes. The growth mechanism requires the fungal cytoskeleton and turgor pressure. In a recent study by Fukuda et al. (mBio 12:e03196-20, 2021, https://doi.org/10.1128/mBio.03196-20 ), hyphal growth was studied in microfluidic devices with channels smaller than the hyphal diameter. The authors discovered that fast-growing fungi like Neurospora crassa enter the channels, but hyphal tips become fragile and rupture frequently, whereas slower-growing fungi like Aspergillus nidulans adapt their hyphal diameter and grow without problems through the channels. This study suggests two different growth mechanisms and a tradeoff between hyphal plasticity and growth speed.
机译:摘要真菌通过它们的菌丝顶端扩展而生长。 连续生长需要恒定的囊泡递送,囊泡熔断和分泌细胞壁生物合成酶。 生长机制需要真菌细胞骨架和托耳压力。 在Fukuda等人最近的一项研究中。 (MBIO 12:E03196-20,2021,HTTPS://Doi.org/10.1128/MBIO.03196-20),在微流体装置中研究了小于螺旋直径的通道的微流体装置。 作者发现,像神经孢子一样快速生长的真菌进入渠道,但悬垂尖端易碎并且经常破裂,而诸如患者的速度较慢的真菌适应其悬垂直径并通过通道产生效果而不会产生问题。 本研究表明两种不同的增长机制和剪瞳塑性和生长速度之间的权衡。

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