Faculty of Life and Environmental Sciences, University of Tsukuba, Ibaraki 305-8572, Japan.
Research Center for Advanced Science and Technology, University of Tokyo, Tokyo 153-8904, Japan.
FEMS Microbiol Ecol. 2023 Aug 22;99(9). doi: 10.1093/femsec/fiad090.
Primary succession and microtopography result in environmental changes and are important processes influencing the community assembly of soil fungi in the Arctic region. In glacier forefields that contain a series of moraine ridges, both processes contribute synchronously to fungal spatial diversity. To reveal the synergistic effects of succession and microtopography, we investigated the fungal community structure and environmental variables in the moraines of the Arklio Glacier, Ellesmere Island. The study sites were established at four locations from the top to the bottom of the ridge slope within each of the three moraine ridges of different post-glacial ages. The location-dependent community composition was equally diverse in both the initial and later stages of succession, suggesting that successional time could alter the effects of microtopography on the fungal community. Moreover, our results suggest that fungal communities at different locations follow different successional trajectories, even if they have passed through the same time lapse. Such a synergistic effect of succession and microtopography of moraines does not allow for parallel changes in fungal communities among moraines or among locations, suggesting that the moraine series contributes substantially to fungal spatial diversity in the glacier forefield.
原生演替和微地形导致环境变化,是影响北极地区土壤真菌群落组装的重要过程。在包含一系列冰碛垄的冰川前缘地区,这两个过程同步促进了真菌的空间多样性。为了揭示演替和微地形的协同作用,我们调查了埃尔斯米尔岛阿克里奥冰川冰碛垄中的真菌群落结构和环境变量。在每个具有不同冰后期年龄的三个冰碛垄的垄坡上,从顶部到底部分别在四个位置建立了研究点。在演替的初始和后期阶段,位置相关的群落组成同样多样,这表明演替时间可能会改变微地形对真菌群落的影响。此外,我们的结果表明,即使经历了相同的时间流逝,不同位置的真菌群落也遵循不同的演替轨迹。这种冰碛垄演替和微地形的协同作用不允许冰碛垄之间或不同位置之间的真菌群落平行变化,这表明冰碛垄系列对冰川前缘地区的真菌空间多样性有很大贡献。