数字农科院2.0

Warming enhances the effects of nitrogen addition on fungal but not on bacterial diversity in an alpine meadow

文献类型: 外文期刊

作者: Ling Han;Hasbagan Ganjurjav;Guozheng Hu;Jianshuang Wu;Xuexia Wang;Yulong Yan;Yilun Hu;Guoxu Ji;Luobu Danjiu;Qingzhu Gao

作者机构:

关键词: Alpine meadow;Microbial diversity;Nitrogen deposition;Plant community composition;Warming

期刊名称: Basic and Applied Ecology

ISSN: 1439-1791

年卷期: 2025 年 84 卷

页码:

收录情况: SCIE(2025版)

摘要: Warming and nitrogen (N) deposition significantly affect soil microbial community characteristics. However, the responses of bacterial and fungal diversity to warming and N deposition, as well as the dominant influencing factors, remain unclear, especially in N-limited and low-temperature ecosystems. We employed a field-controlled experimental design with warming (W, using open-top chambers at +2 °C), N addition (N, 40 kg N ha−1 yr−1 NH4NO3), and their interaction (NW) to simulate their effects on soil microbial community composition and diversity, as well as plant community characteristics. Our results showed a significant decrease in bacterial richness (Chao1) under warming. N addition had a positive effect on bacterial richness (Chao1) but a negative effect on fungal diversity (Shannon and Chao1), which led to a considerable shift in bacterial community composition. Conversely, N addition combined with warming significantly increased fungal diversity but decreased bacterial diversity compared with N addition alone. Bacterial diversity was positively influenced by soil moisture but negatively affected by soil temperature and forb dominance. Fungal diversity was negatively influenced by soil NH4+-N content and belowground biomass. Additionally, our results showed a synergistic effect on fungi owing to changes in plant community composition, while an antagonistic effect on bacterial diversity was observed owing to reduced water and nutrient availability under warming plus N addition. Our findings underscore the importance of considering plant productivity and diversity when examining microbial diversity responses to warming and N addition in alpine meadows.

分类号:

  • 相关文献

[1]Warming intensified the effects of nitrogen addition on N2O emissions from alpine meadow in the northern Qinghai-Tibet Plateau. Li, Ming-Jie,Ge, Yi-Qing,Ganjurjav, Hasbagan,Hu, Guo-Zheng,Wu, Hong-Bao,Yan, Jun,He, Shi-Cheng,Gao, Qing-Zhu. 2024

[2]Nitrogen Addition Affects Ecosystem Carbon Exchange by Regulating Plant Community Assembly and Altering Soil Properties in an Alpine Meadow on the Qinghai-Tibetan Plateau. Han, Ling,Ganjurjav, Hasbagan,Hu, Guozheng,Wu, Jianshuang,Yan, Yulong,Danjiu, Luobu,He, Shicheng,Xie, Wendong,Yan, Jun,Gao, Qingzhu. 2022

[3]Nitrogen deposition experiment mimicked with NH4NO3 overestimates the effect on soil microbial community composition and functional potential in the Eurasian steppe. Li, Tingting,Zhang, Zijia,Ma, Yiping,Song, Yuqian,Yang, Guojiao,Han, Xingguo,Zhang, Ximei. 2022

[4]Grazing intensity by sheep affects spatial diversity in botanical composition of Inner Mongolian grassland. Han, Xu,Ochoa-Hueso, Raul,Ding, Yong,Li, Xiliang,Jin, Ke,van der Putten, Wim H.,Struik, Paul C.. 2024

[5]Responses of alpine vegetation and soils to the disturbance of plateau pika (Ochotona curzoniae) at burrow level on the Qinghai-Tibetan Plateau of China. Zhang, Yong,Dong, Shikui,Liu, Shiliang,Cao, Xujuan,Dong, Shikui,Gao, Qingzhu,Liang, Yan.

[6]Effects of short-term and long-term warming on soil nutrients, microbial biomass and enzyme activities in an alpine meadow on the Qinghai-Tibet Plateau of China. Wang, Xuexia,Dong, Shikui,Liu, Shiliang,Su, Xukun,Li, Yuanyuan,Gao, Qingzhu,Zhou, Huakun.

[7]Effects of Grazing and Fencing on Carbon and Nitrogen Reserves in Plants and Soils of Alpine Meadow in the three Headwater Resource Regions. Fan, Yuejun,Shi, Shangli,Fan, Yuejun,Shi, Shangli,Fan, Yuejun,Shi, Shangli,Fan, Yuejun,Hou, Xiangyang,Shi, Hongxiao.

[8]Effect of a grazing ban on restoring the degraded alpine meadows of Northern Tibet, China. Zhang, W. N.,Ganjurjav, H.,Liang, Y.,Gao, Q. Z.,Wan, Y. F.,Li, Y.,Zhang, W. N.,Ganjurjav, H.,Liang, Y.,Gao, Q. Z.,Wan, Y. F.,Li, Y.,Baima, Y. Z.,Xirao, Z. M..

[9]SEEDLING RECRUITMENT OF FORB SPECIES UNDER EXPERIMENTAL MICROHABITATS IN ALPINE GRASSLAND. Tian Fu-Ping,Shi Shang-Li,Liu Yu,Wu Gao-Lin,Tian Fu-Ping,Wu Gao-Lin. 2015

[10]Nitrogen Deposition Induced Significant Increase O.f N2O Emissions In A n Dry Alpine Meadow On The Central Qinghai-Tibetan Plateau. Yan, YL, Ganjurjav, H, Hu, GZ, Liang, Y, Li, Y, He, SC, Danjiu, LB, Yang, J, Gao, QZ. 2018

[11]Responses of bacterial community composition and diversity to multi-level nitrogen addition at different periods of growing season driven by conditional rare taxa in an alpine meadow. Hu, Yilun,Ganjurjav, Hasbagan,Hu, Guozheng,Ji, Guoxu,Han, Lin,Sha, Yubao,Liang, Yan,Gao, Qingzhu. 2023

[12]Grazing Exclusion Changed the Complexity and Keystone Species of Alpine Meadows on the Qinghai-Tibetan Plateau. Yong Zhang,Qingzhu Gao,Hasbagan Ganjurjav,Shikui Dong,Qiuzhu Zheng,Yandan Ma,Kemin Liang. 2021

[13]Changes in bud bank and their correlation with plant community composition in degraded alpine meadows. Yuan Li,Gensheng Bao,Peng Zhang,Xiaoyun Feng,Jingjuan Ma,Hainian Lu,Hongxiao Shi,Xiaoxing Wei,Bingming Tang,Kai Liu. 2023

[14]Short-term robust plant overcompensatory growth was observed in a degraded alpine meadow on the southeastern Qinghai-Tibetan Plateau. Yandan Ma,Qiuzhu Zheng,Yong Zhang,Hasbagan Ganjurjav,Haitao Yue,Xiaorong Wang,Kaiting Wu,Kemin Liang,Hao Zeng,Huimin Wu. 2024

[15]N limitation may inhibit the effectiveness of close-to-nature restoration measures for degraded alpine meadows on the northern Qinghai‒Tibet Plateau. Guoxu Ji,Guozheng Hu,Qingzhu Gao,Hasbagan Ganjurjav,Yunfan Wan,Huihui Liu,Peidong Yu,Shicheng He,Jun Yan. 2024

[16]Warming decreased plant litter decomposition by modulating soil fauna interactions in a Tibetan alpine meadow. Xuyang Han,Xuexia Wang,Zuonan Cao,Guozheng Hu,Peidong Yu,Shicheng He,Jun Yan,Hasbagan Ganjurjav,Qingzhu Gao. 2024

[17]Differential response of alpine steppe and alpine meadow to climate warming in the central Qinghai-Tibetan Plateau. Ganjurjav, Hasbagan,Gao, Qingzhu,Liang, Yan,Cao, Xujuan,Zhang, Weina,Li, Wenhan,Wan, Yunfan,Li, Yue,Lin, Erda,Ganjurjav, Hasbagan,Gao, Qingzhu,Liang, Yan,Cao, Xujuan,Zhang, Weina,Li, Wenhan,Wan, Yunfan,Li, Yue,Lin, Erda,Gornish, Elise S.,Schwartz, Mark W.,Zhang, Yong,Danjiu, Luobu,Guo, Hongbao.

[18]Effects of warming and nitrogen deposition on the coupling mechanism between soil nitrogen and phosphorus in Songnen Meadow Steppe, northeastern China. Zhang, Nanyi,Song, Piao,Guo, Jixun,Gao, Yingzhi,Guo, Rui,Song, Piao.

[19]Simulating the Impacts of Global Warming on Wheat in China Using a Large Area Crop Model. Li Sanai,Li Sanai,Wheeler, Tim,Challinor, Andrew,Lin Erda,Xu Yinlong,Ju Hui. 2010

[20]Air Warming And Co2 Enrichment Increase N Use Efficiency And Decrease N Surplus In A Chinese Double Rice Cropping System. Wang, B, Guo, C, Wan, YF, Li, JL, Ju, XT, Cai, WW, You, SC, Qin, XB, Wilkes, A, Li, YE. 2020

作者其他论文 更多>>