The activity and functions of soil microbial communities in the Finnish sub-Arctic vary across vegetation types

冻土带 土壤水分 分解者 生态学 植被(病理学) 生态系统 生物 土壤碳 酸杆菌 环境科学 北极的 灌木 植物群落 放线菌门 生态演替 医学 遗传学 病理 细菌 16S核糖体RNA
作者
Sirja Viitamäki,Igor Stelmach Pessi,Anna‐Maria Virkkala,Pekka Niittynen,Julia Kemppinen,Eeva Eronen‐Rasimus,Miska Luoto,Jenni Hultman
出处
期刊:FEMS Microbiology Ecology [Oxford University Press]
卷期号:98 (8) 被引量:24
标识
DOI:10.1093/femsec/fiac079
摘要

Due to climate change, increased microbial activity in high-latitude soils may lead to higher greenhouse gas (GHG) emissions. However, microbial GHG production and consumption mechanisms in tundra soils are not thoroughly understood. To investigate how the diversity and functional potential of bacterial and archaeal communities vary across vegetation types and soil layers, we analyzed 116 soil metatranscriptomes from 73 sites in the Finnish sub-Arctic. Meadow soils were characterized by higher pH and lower soil organic matter (SOM) and carbon/nitrogen ratio. By contrast, dwarf shrub-dominated ecosystems had higher SOM and lower pH. Although Actinobacteria, Acidobacteria, Alphaproteobacteria and Planctomycetes were dominant in all communities, there were significant differences at the genus level between vegetation types; plant polymer-degrading groups were more active in shrub-dominated soils than in meadows. Given that climate-change scenarios predict the expansion of shrubs at high latitudes, our results indicate that tundra soil microbial communities harbor potential decomposers of increased plant litter, which may affect the rate of carbon turnover in tundra soils. Additionally, transcripts of methanotrophs were detected in the mineral layer of all soils, which may moderate methane fluxes. This study provides new insights into possible shifts in tundra microbial diversity and activity due to climate change.

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