Root exudates increase soil respiration and alter microbial community structure in alpine permafrost and active layer soils
- PMID: 33393203
- DOI: 10.1111/1462-2920.15383
Root exudates increase soil respiration and alter microbial community structure in alpine permafrost and active layer soils
Abstract
Due to climate warming, alpine ecosystems are changing rapidly. Ongoing upward migrations of plants and thus an increase of easily decomposable substrates will strongly affect the soil microbiome. To understand how belowground communities will respond to such changes, we set up an incubation experiment with permafrost and active soil layers from northern (NW) and southern (SE) slopes of a mountain ridge on Muot da Barba Peider in the Swiss Alps and incubated them with or without artificial root exudates (AREs) at two temperatures, 4°C or 15°C. The addition of AREs resulted in elevated respiration across all soil types. Bacterial and fungal alpha diversity decreased significantly, coinciding with strong shifts in microbial community structure in ARE-treated soils. These shifts in bacterial community structure were driven by an increased abundance of fast-growing copiotrophic taxa. Fungal communities were predominantly affected by AREs in SE active layer soils and shifted towards fast-growing opportunistic yeast. In contrast, in the colder NW facing active layer and permafrost soils fungal communities were more influenced by temperature changes. These findings demonstrate the sensitivity of soil microbial communities in high alpine ecosystems to climate change and how shifts in these communities may lead to functional changes impacting biogeochemical processes.
© 2021 Society for Applied Microbiology and John Wiley & Sons Ltd.
References
-
- Abarenkov, K., Henrik Nilsson, R., Larsson, K.-H., Alexander, I.J., Eberhardt, U., Erland, S., et al. (2010) The UNITE database for molecular identification of fungi - recent updates and future perspectives. New Phytol 186: 281-285.
-
- Adamczyk, M., Hagedorn, F., Wipf, S., Donhauser, J., Vittoz, P., Rixen, C., et al. (2019) The soil microbiome of Gloria Mountain summits in the Swiss Alps. Front Microbiol 10: 1080.
-
- Adamczyk, M., Perez-Mon, C., Gunz, S., and Frey, B. (2020) Strong shifts in microbial community structure are associated with increased litter input rather than temperature in high Arctic soils. Soil Biol Biochem 151: 108054.
-
- Ahmadjian, V. (1963) The fungi of lichens. Sci Am 208: 122-133.
-
- Ali, R.S., Poll, C., and Kandeler, E. (2018) Dynamics of soil respiration and microbial communities: interactive controls of temperature and substrate quality. Soil Biol Biochem 127: 60-70.
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