自行车
丰度(生态学)
生态系统
营养循环
氮气循环
营养物
草原
生物
磷
土壤碳
高原(数学)
生态学
相对物种丰度
植物
农学
氮气
化学
土壤水分
林业
数学分析
有机化学
地理
数学
作者
Jiannan Xiao,Shikui Dong,Hao Shen,Shuai Li,Kelly J. Wessell,Shiliang Liu,Wei Li,Yangliu Zhi,Zhiyuan Mu,Hongbo Li
标识
DOI:10.3389/fpls.2022.860590
摘要
Although human activities have greatly increased nitrogen (N) and phosphorus (P) inputs to the alpine grassland ecosystems, how soil microbial functional genes involved in nutrient cycling respond to N and P input remains unknown. Based on a fertilization experiment established in an alpine meadow of the Qinghai-Tibetan Plateau, we investigated the response of the abundance of soil carbon (C), N, and P cycling genes to N and P addition and evaluated soil and plant factors related to the observed effects. Our results indicated that the abundance of C, N, and P cycling genes were hardly affected by N addition, while P addition significantly increased most of them, suggesting that the availability of P plays a more important role for soil microorganisms than N in this alpine meadow ecosystem. Meanwhile, when N and P were added together, the abundance of C, N, and P cycling genes did not change significantly, indicating that the promoting effects of P addition on microbial functional genes abundances were overwhelmed by N addition. The Mantel analysis and the variation partitioning analysis revealed the major role of shoot P concentration in regulating the abundance of C, N, and P cycling genes. These results suggest that soil P availability and plant traits are key in governing C, N, and P cycling genes at the functional gene level in the alpine grassland ecosystem.
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