@article{Zhang2026, 
author = {Ke Zhang and Feng Zhang and Yaoming Li and Anna Du and Qingpu Wang and Zilong Liu and Fengcai He and Shengnan Wu and Shengmei Li and Chunhui Ma and Xianqi Zhou and Juejie Yang and Huaiying Yao and Richard D Bardgett and Shikui Dong},
title = {Asymbiotic biological nitrogen fixation makes a great contribution to nitrogen balance in unfertilized alpine grasslands across the Qinghai-Tibet Plateau},
year = {2026},
journal = {Journal of Integrative Agriculture (JIA)},
volume = {25},
number = {8},
pages = {3483-3494},
keywords = {alpine grasslands, asymbiotic nitrogen fixation, diazotrophs, DNA stable isotope probing, nitrogen input},
url = {https://www.sciopen.com/article/10.1016/j.jia.2025.09.031},
doi = {10.1016/j.jia.2025.09.031},
abstract = {Nitrogen limitation has been well documented in grasslands on the Qinghai-Tibet Plateau (QTP), significantly affecting predictions of plant growth and carbon sequestration potential under future climate change scenario. Beside atmospheric deposition, asymbiotic nitrogen fixation (ANF) may be crucial for nitrogen input in QTP grasslands, due to the lack of artificial fertilization and legume plants. However, little is known about the ANF’s contribution to nitrogen input on the QTP. To fill this knowledge gap, we studied the composition, diversity and activity of ANF diazotrophs across the QTP grasslands by using multiple methods of transect sampling, 15N-labeling and DNA stable isotope probing (SIP), amplicon sequencing, Random Forest algorithm modelling and digital mapping. We found that Skermanella and Mesorhizobium were the most abundant diazotrophic genera. Soil pH and total phosphorus concentration were the dominant driving factors for their composition and diversity. DNA stable isotope probing with 15N2 revealed that Mesorhizobium were the most active nitrogen-fixing microorganisms. The potential N-fixation rates of these diazotrophs ranged from 0 to 18.1 kg N ha–1 yr–1, resulting in an estimated annual input of approximately 0.50 Tg N across the entire QTP’s alpine grasslands (i.e., ~25% of annual nitrogen input). The most important factor affecting the ANF rate was soil micronutrient molybdenum, a cofactor in the nitrogen-fixing nitrogenase, accounting for 24.64% of the variance. These findings suggested that ANF diazotrophs play important roles in maintaining nitrogen balance in the QTP grasslands and expand our understanding of Mesorhizobium’s ecological roles beyond traditional symbiotic interactions.}
}