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◆ Biology2026-08-07

The Different Responses of the Soil Fungal and Bacterial Functional Community Structure to Short-Term N and P Additions in an Alpine Steppe on the Tibetan Plateau.

Shaolin Huang, Maoshan Lian, Chengqun Yu, Gang Fu, Wei Sun, Shaowei Li, Fusong Han

原始摘要(英文原文)· Original abstract
The soil microbial functional community is a better predictor of ecosystem processes under global change. However, the responses of the soil microbial functional community structure to short-term nitrogen (N) and phosphorus (P) additions remain unclear. Here, we carried out an experiment exploring the effects of N and P additions on soil fungal and bacterial functional diversity and community composition in an alpine steppe on the Tibetan Plateau. The results showed that soil fungal functional α-diversity significantly decreased under N or P addition, whereas soil bacterial functional α-diversity did not change. Furthermore, soil bacterial functional group aerobic nitrite oxidation increased significantly under combined N and P additions, but soil bacterial and fungal community composition and β-diversity did not change. Further analysis illustrated that soil available nitrogen was the main factor leading to the changes in soil fungal functional α-diversity and soil bacterial functional groups under N and P additions. Therefore, we should give importance to the potential influence in view of future increasing N and P deposition on the soil microbial functional community in the alpine grassland on the Tibetan Plateau, which will be beneficial for the prediction of soil biogeochemical cycles and guiding ecosystem management.
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The Different Responses of the Soil Fungal and Bacterial Functional Community Structure to Short-Term N and P Additions in an Alpine Steppe on the Tibetan Plateau. — 科研速览 Science Skim