数字农科院2.0

The pattern of soil microbe metabolic limitation and carbon use efficiency was altered by light grazing in typical steppe

文献类型: 外文期刊

作者: Yiyang Zhao;Li Liu;Yong Ding;Lizhu Guo;Jing Guo

作者机构:

关键词: Grazing intensity;Microbe metabolic limitation;Microbial carbon use efficiency;Typical Steppe

期刊名称: Global Ecology and Conservation

ISSN: 2351-9894

年卷期: 2025 年 58 卷

页码:

收录情况: SCIE(2025版)

摘要: The influence of grazing on the limiting of soil microbial metabolism is crucial for optimizing grazing management aimed at enhancing the soil's capacity for carbon sequestration in grasslands. Previous studies have investigated the impact of different levels of grazing intensity on the metabolic behavior and carbon utilization efficiency of soil microorganisms. This research aimed to evaluate the microbial biomass levels, physicochemical properties, and the functions of four specific extracellular enzymes associated with the uptake of C, N, and P in a sample plot that exemplifies a typical steppe ecosystem. The study intends to elucidate the dynamics of soil enzyme stoichiometry while identifying the constraints on carbon use efficiency and microbial metabolism in relation to different grazing intensities. The results reveal that in conditions of light grazing, microbial metabolic processes are co-limited by C and P, whereas in ungrazed plots and those subjected to different grazing treatments, limitations are primarily due to C and N. Key determinants of microbial carbon limitation include nutrient availability and the ratio of microbial biomass, while limitations pertaining to N, and P are primarily influenced by microbial biomass levels and their respective ratios. Notably, microbial carbon use efficiency peaked under light grazing conditions. Therefore, sustained light grazing can modify the limitations affecting soil microbial metabolism and enhance microbial carbon use efficiency. This study's outcomes offer a theoretical foundation for developing sustainable grazing management strategies that can improve soil quality and augment the carbon sequestration potential of grasslands.

分类号:

  • 相关文献

[1]Livestock grazing increases soil bacterial alpha-diversity and reduces microbial network complexity in a typical steppe. Yiyang Zhao,Zhaokai Sun,Chengyang Zhou,Yong Ding,Yiran Zhang,Yuning Liu,Li Liu. 2025

[2]The Characteristics of Plant Communities Along East Eurasian Steppe Transect. Han Wen-jun,Hou Xiang-yang,Olokhnuud, Chun-liang,Schellenberg, Michael P.. 2014

[3]The spatial distribution and accumulation characteristics of heavy metals in steppe soils around three mining areas in Xilinhot in Inner Mongolia, China. Gao, Yongfei,Liu, Honglin,Liu, Guixiang.

[4]The Spatial Distribution And Accumulation C.haracteristics Of Heavy Metals I n Steppe Soils Around Three Mining Areas In Xilinhot In Inner Mongolia, China. Gao, YF, Liu, HL, Liu, GX. 2017

[5]Changes in precipitation have both direct and indirect effects on typical steppe aboveground net primary productivity in Loess Plateau, China. Wang, Yutao,Shen, Yujia,Xie, Yingzhong,Ma, Hongbin,Li, Wanchun,Luo, Xu,Zhang, Hao,Zhang, Yi,Li, Jianping. 2022

[6]Long-term grazing changed the spatial distributions of dominant species in typical steppe of Inner Mongolia. Mengzhen Li,Jinrui Wu,Xiangjun Yun,Shijie Lv,Bo Xu,Junyi Yang,Jiale Zhao,Le Zhang. 2024

[7]Contrasting diurnal impacts of vapor pressure deficit on water use efficiency in two semiarid steppe ecosystems. Haoran Xie,Shichao Tian,Fei Li,Jiali Sun,Xinmiao Hu,Haihua Bai,Changliang Shao. 2025

[8]Nitrogen addition mediates the effect of soil microbial diversity on microbial carbon use efficiency under long-term tillage practices. Zhang, Mengni,Li, Shengping,Wu, Xueping,Zheng, Fengjun,Song, Xiaojun,Lu, Jinjing,Liu, Xiaotong,Wang, Bisheng,Abdelrhmana, Ahmed Ali,Degre, Aurore. 2022

[9]Nitrogen fertilization affected microbial carbon use efficiency and microbial resource limitations via root exudates. Jinshan Lian,Guihua Li,Jianfeng Zhang,Sébastien Massart. 2024

[10]Long-term green manuring increases soil carbon sequestration via decreasing qCO2 caused by lower microbial phosphorus limitation in a dry land field. Zhengbo Ma,Ting Liang,Haoran Fu,Qingxu Ma,Danna Chang,Jiudong Zhang,Zongxian Che,Guopeng Zhou,Weidong Cao. 2024

[11]Microbial traits mediate the functional components of soil organic carbon under long-term fertilization. Yuan, Yanhong,Zhang, Jiachang,Feng, Zhanrong,Zhang, Qi,Zhao, Zihan,Li, Qiang,Zhang, Shuiqing,Wei, Gehong,Han, Xinhui,Xu, Minggang,Cai, Andong,Ren, Chengjie,Ren, C.. 2026

[12].Competitive equilibrium between carbon loss and sequestration driven by erosion: Stratified responses of microbial metabolism and mineral protection.. Mengni Li, Yulong Shi, Runyu Xue, Jeroen Meersmans, Qingwen Zhang. 2026

[13]Root processes counteract the suppression of nitrogen-induced priming effects by enhancing microbial activity and catabolism in greenhouse vegetable production systems. Jinshan Lian,Sébastien Massart,Guihua Li,Jianfeng Zhang. 2025

[14]Long-term manure application enhances carbon use efficiency in soil aggregates by regulating microbial communities in cropland. Xiaodong Sun,Chenyang Zhang,Kailou Liu,Minggang Xu,Andong Cai. 2025

[15]Effects of grazing and topography on dust flux and deposition in the Xilingele grassland, Inner Mongolia. Hoffmann, C.,Funk, R.,Sommer, M.,Wieland, R.,Li, Y..

[16]Effects of livestock grazing on soil nitrogen mineralization on Hulunber meadow steppe, China. Yan, R.,Yang, G.,Chen, B.,Wang, X.,Yan, Y.,Xin, X.,Zhu, X.,Bai, K.,Li, L.,Rong, Y.,Hou, L..

[17]Microbial dynamic changes under different grazing intensities in growing seasons of Desert steppe. He, Jing,Yang, Tingting,Shi, Tao. 2014

[18]Effect of grazing on wind driven carbon and nitrogen ratios in the grasslands of Inner Mongolia. Hoffmann, Carsten,Funk, Roger,Sommer, Michael,Li, Yong.

[19]Grazing intensity and driving factors affect soil nitrous oxide fluxes during the growing seasons in the Hulunber meadow steppe of China. Yan, Ruirui,Tang, Huajun,Xin, Xiaoping,Chen, Baorui,Yan, Yunchun,Wang, Xu,Yang, Guixia,Murray, Philip J.. 2016

[20]Grazing primarily drives the relative abundance change of C-4 plants in the typical steppe grasslands across households at a regional scale. Zhang, Qing,Ma, Wenjing,Kang, Sarula,Niu, Jianming,Ding, Yong,Hou, Xiangyang,Li, Xiliang,Sarula,Zhang, Qing,Li, Xin,Niu, Jianming.

作者其他论文 更多>>