期刊
MICROBIAL ECOLOGY
卷 68, 期 4, 页码 708-715出版社
SPRINGER
DOI: 10.1007/s00248-014-0385-6
关键词
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资金
- National Natural Science Foundation of China [41101228, 41071167]
- 'Hundred Talents Program' of the Chinese Academy of Sciences
- KC Wong Magna Fund in Ningbo University
Soil fungi fill pivotal ecological roles in biogeochemical processes, particularly dominating decomposition of lignin. Little is known, however, about the responses of different fungal groups to climate warming with respect to bacteria. In this study, using barcode pyrosequencing, we showed that short-term (15 months) of field exposure of an alpine meadow to warming (elevated 1 and 2 A degrees C) did not markedly alter the overall soil fungal community structures and alpha-diversity on Tibetan Plateau, but the average beta-diversity dramatically decreased in response to warming. However, soil respiration rates were stimulated in the growing season, which significantly (P < 0.001) correlated with soil temperature. Particularly, warming triggered dramatic shifts in the community structure of dominate Ascomycota and rare taxa (relative abundance < 0.1 %). In addition, the abundances of specific Basidiomycota-affiliated members significantly increased, while Ascomycota showed a range of responses to warming. Collectively, we conclude that the fungal communities are resistant to short-term warming, though variations are observed in certain species and rare taxa. This report indicates that changes in a relatively small subset of the soil fungal community are sufficient to produce substantial changes in function, such as CO2 efflux rates.
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