Xiong Bi-Jing, Dusny Christian, Wang Lin, Appel Jens, Lindstaedt Kristin, Schlosser Dietmar, Harms Hauke, Wick Lukas Y
Department of Environmental Microbiology, Helmholtz Centre for Environmental Research-UFZ, Permoserstraβe 15, 04318, Leipzig, Germany.
Department of Solar Materials, Helmholtz Centre for Environmental Research-UFZ, Permoserstraβe 15, 04318, Leipzig, Germany.
ISME Commun. 2021 Dec 11;1(1):75. doi: 10.1038/s43705-021-00075-3.
The pH of an environment is both a driver and the result of diversity and functioning of microbial habitats such as the area affected by fungal hyphae (mycosphere). Here we used a novel pH-sensitive bioreporter, Synechocystis sp. PCC6803_peripHlu, and ratiometric fluorescence microscopy, to spatially and temporally resolve the mycosphere pH at the micrometre scale. Hyphae of the basidiomycete Coprionopsis cinerea were allowed to overgrow immobilised and homogeneously embedded pH bioreporters in an agarose microcosm. Signals of >700 individual cells in an area of 0.4 × 0.8 mm were observed over time and used to create highly resolved (3 × 3 µm) pH maps using geostatistical approaches. C. cinerea changed the pH of the agarose from 6.9 to ca. 5.0 after 48 h with hyphal tips modifying pH in their vicinity up to 1.8 mm. pH mapping revealed distinct microscale spatial variability and temporally stable gradients between pH 4.4 and 5.8 over distances of ≈20 µm. This is the first in vivo mapping of a mycosphere pH landscape at the microscale. It underpins the previously hypothesised establishment of pH gradients serving to create spatially distinct mycosphere reaction zones.
环境的pH值既是微生物栖息地(如受真菌菌丝影响的区域,即菌根圈)多样性和功能的驱动因素,也是其结果。在这里,我们使用了一种新型的pH敏感生物报告基因——集胞藻属PCC6803_peripHlu,以及比率荧光显微镜,在微米尺度上对菌根圈的pH值进行时空解析。在琼脂糖微观世界中,允许灰盖鬼伞的菌丝在固定且均匀包埋的pH生物报告基因上过度生长。随着时间的推移,观察了0.4×0.8毫米区域内700多个单细胞的信号,并使用地质统计学方法创建了高分辨率(3×3微米)的pH值图。48小时后,灰盖鬼伞将琼脂糖的pH值从6.9改变到约5.0,菌丝尖端在其附近将pH值改变高达1.8毫米。pH值图揭示了在约20微米的距离上,pH值在4.4和5.8之间存在明显的微观尺度空间变异性和时间上稳定的梯度。这是首次在微观尺度上对菌根圈pH值景观进行体内测绘。它支持了先前假设的pH梯度的建立,这些梯度用于创建空间上不同的菌根圈反应区。