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
作者其他论文 更多>>
-
Ferulic acid concentration in 233 maize inbreds and its processing stability in selected high-ferulic-acid lines
作者:Xue Gong;Yuan Li;Li Liu;Jindong Fu;Zhonghu He;Liang Li;Wenfei Tian
关键词:Ferulic acid;Functional food;Maize;Phytochemical;Whole grain
-
Livestock grazing increases soil bacterial alpha-diversity and reduces microbial network complexity in a typical steppe
作者:Yiyang Zhao;Zhaokai Sun;Chengyang Zhou;Yong Ding;Yiran Zhang;Yuning Liu;Li Liu
关键词:Grazing intensity;Microbial community;Microbial diversity;Networks complexity;Typical steppe
-
Improved methyl supply for 5-methyltetrahydrofolate production in E. coli through a novel C1 transfer pathway
作者:Wen Liu;Jing Guo;Wei Lu;Tao Cheng;Yiting Li;Mo Xian;Rubing Zhang
关键词:5-MTHF;Escherichia coli;Metabolic engineering;Methyl supply
-
Combining UAV multisensor field phenotyping and genome-wide association studies to reveal the genetic basis of plant height in cotton (Gossypium hirsutum)
作者:Liqiang Fan;Jiajie Yang;Xuwen Wang;Zhao Liu;Bowei Xu;Li Liu;Chenxu Gao;Xiantao Ai;Fuguang Li;Lei Gao;Yu Yu;Zuoren Yang
关键词:Genome-wide association study;LiDAR;Plant height;RGB;UAV
-
Early identification of apple bitter pit using hyperspectral imaging technology
作者:Congying Dong;Tianyi Yang;Li Liu;Zhifeng Wei;Caiyun Shi;Dengtao Gao
关键词:Apple bitter pit;Early identification;Hyperspectral imaging technology;Spectral information;Texture information
-
Time-resolved single-cell atlas identifies the spatiotemporal transcription dynamics in vernalization response in Brassica rapa
作者:Zhicheng Zhang;Xu Cai;Jianli Liang;Jiahe Liu;Jing Guo;Wencai Yang;Xiaowu Wang;Jian Wu
关键词:Brassica rapa;BrFLC;CP: Plants;leaf cell atlas;single-cell RNA-seq;vernalization
-
Novel FSH receptor heterodimer may be related to the high prolificacy of Jintang black goat
作者:Ye Cao;Sujun Zhao;Mingxing Chu;Ran Di;Yufang Liu;Li Liu;Xueqin Zhang;Shaoping Qian;Yizheng Zhang
关键词:dimerization;FRET;FSHRA;FSHRB;in vitro maturation;Jintang black goat;prolificacy