Xiong Bi-Jing, Stanley Claire E, Dusny Christian, Schlosser Dietmar, Harms Hauke, Wick Lukas Y
Helmholtz Centre for Environmental Research-UFZ, Department of Environmental Microbiology, Permoserstraβe 15, 04318 Leipzig, Germany.
Department of Bioengineering, Imperial College of London, South Kensington Campus, London SW7 2AZ, UK.
J Fungi (Basel). 2022 Jun 3;8(6):599. doi: 10.3390/jof8060599.
Creating unique microenvironments, hyphal surfaces and their surroundings allow for spatially distinct microbial interactions and functions at the microscale. Using a microfluidic system and pH-sensitive whole-cell bioreporters (Synechocystis sp. PCC6803) attached to hyphae, we spatially resolved the pH along surfaces of growing hyphae of the basidiomycete Coprinopsis cinerea. Time-lapse microscopy analysis of ratiometric fluorescence signals of >2400 individual bioreporters revealed an overall pH drop from 6.3 ± 0.4 (n = 2441) to 5.0 ± 0.3 (n = 2497) within 7 h after pH bioreporter loading to hyphal surfaces. The pH along hyphal surfaces varied significantly (p < 0.05), with pH at hyphal tips being on average ~0.8 pH units lower than at more mature hyphal parts near the entrance of the microfluidic observation chamber. Our data represent the first dynamic in vitro analysis of surface pH along growing hyphae at the micrometre scale. Such knowledge may improve our understanding of spatial, pH-dependent hyphal processes, such as the degradation of organic matter or mineral weathering.
通过创造独特的微环境,菌丝表面及其周围环境在微观尺度上实现了空间上不同的微生物相互作用和功能。我们使用微流体系统和附着在菌丝上的pH敏感型全细胞生物传感器(集胞藻PCC6803),在空间上解析了灰盖鬼伞这种担子菌生长菌丝表面的pH值。对2400多个个体生物传感器的比率荧光信号进行延时显微镜分析发现,在pH生物传感器加载到菌丝表面后的7小时内,整体pH值从6.3±0.4(n = 2441)降至5.0±0.3(n = 2497)。菌丝表面的pH值变化显著(p < 0.05),菌丝尖端的pH值平均比微流体观察室入口附近较成熟的菌丝部分低约0.8个pH单位。我们的数据代表了在微米尺度上对生长菌丝表面pH值的首次动态体外分析。这些知识可能会增进我们对空间上、pH值依赖的菌丝过程的理解,比如有机物降解或矿物风化。