Impacts of long-term different fertilization regimes on microbial utilization of straw-derived carbon in greenhouse vegetable soils: insights from its ecophysiological roles and temperature responses
文献类型: 外文期刊
作者: Ma, Long 1 ; Li, Ruonan 2 ; Luan, Haoan 3 ; Tang, Jiwei 1 ; Wang, Liying 2 ; Guo, Tengfei 4 ; Huang, Shaowen 1 ;
作者机构: 1.Chinese Acad Agr Sci, Inst Agr Resources & Reg Planning, State Key Lab Efficient Utilizat Arid & Semiarid A, Beijing, Peoples R China
2.Hebei Acad Agr & Forestry Sci, Inst Agr Resources & Environm, Shijiazhuang, Peoples R China
3.Hebei Agr Univ, Coll Forestry, Baoding, Peoples R China
4.Henan Acad Agr Sci, Inst Plant Nutr & Environm Resources, Zhengzhou, Peoples R China
关键词: greenhouse vegetable soils; straw decomposition; long-term different fertilization treatments; incubation temperatures; DNA-SIP; high-throughput and metagenomic sequencing
期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:4.8; 五年影响因子:5.7 )
ISSN: 1664-462X
年卷期: 2024 年 15 卷
页码:
收录情况: SCI
摘要: As the largest organic carbon input in the agroecosystems, crop residues can increase soil carbon sequestration and crop production in greenhouse vegetable fields (GVFs). However, the soil microbiological mechanisms driving straw decomposition in GVFs under different incubation temperatures and fertilization treatments are not clear. Thus, soil samples were collected from a long-term field experiment included chemical fertilizer application alone (CF), 2/4 fertilizer N+2/4 organic fertilizer N (CM), 2/4 fertilizer N+1/4 organic fertilizer N+1/4 straw N (CMS), 2/4 fertilizer N+2/4 straw N (CS), and incubated with 13C-labeled straw at different temperatures (15, 25, and 35 degrees C) for 60 days. Organic-amended treatments (CM, CMS, and CS), especially CMS treatment, increased soil bacterial Alpha diversity before and after straw addition. Straw decomposition process was dominated by soil Proteobacteria, Actinobacteria, and Firmicutes for each treatments. The effect of incubation temperature on soil microbial community composition was higher than that of fertilization treatments. Soil Alphaproteobacteria and Actinomycetia were the most predominant class involved in straw decomposition. Gammaproteobacteria (Pseudomonas, Steroidobacter, Acidibacter, and Arenimonas) were the unique and predominant class involved in straw decomposition at medium and high temperatures as well as in the straw-amended treatments. Organic-amended treatments, especially straw-amended treatments, increased the relative abundance of glycosyl transferases (GT) and auxiliary activities (AA). Alphaproteobacteria, Actinomycetia, and Gammaproteobacteria had higher relative contribution to carbohydrase genes. In summary, the long-term organic-amended treatments altered the structure of soil microbial communities and increased soil bacterial diversity, with the CMS having a greater potential to enhance resistance to external environmental changes. Soil Alphaproteobacteria and Actinomycetia were responsible for the dominance of straw decomposition, and Gammaproteobacteria may be responsible for the acceleration of straw decomposition. Fertilization treatments promote straw decomposition by increasing the abundance of indicator bacterial groups involved in straw decomposition, which is important for isolating key microbial species involved in straw decomposition under global warming.
- 相关文献
作者其他论文 更多>>
-
Improving soil quality and crop yield of fluvo-aquic soils through long-term organic-inorganic fertilizer combination: Promoting microbial community optimization and nutrient utilization
作者:Yang, Jinkang;Ren, Yanan;Jia, Mengke;Liu, Hongen;Zhao, Peng;Wang, Long;Jie, Xiaolei;Huang, Shaomin;Guo, Tengfei;Liu, Bingyang
关键词:Organic-inorganic fertilizers combination; Fluvo-aquic soils; Soil quality; Functional microbial communities; Long-term localization experiments
-
Divergent Trajectory in the Succession of Maize Straw Decomposing Fungal Populations Due to Different Fertilizer Regime as Revealed by Stable Isotope Probing
作者:Wang, Yaxian;Xu, Chunyan;Sheng, Kai;Wang, Yilun;Li, Hui;Zhang, Qian;Zhang, Huiyu;Guo, Tengfei;Ai, Chao
关键词:Straw return; DNA-SIP; Fungal community; Co-occurrence network
-
Biochar-Mediated Effects on Changes in Soil Quality and Microbial Communities
作者:Wu, Mingyu;Wang, Mengyuan;Shi, Wenxuan;Zhang, Qian;Li, Peipei;Han, Yanlai;Li, Hui;Guo, Tengfei
关键词:bacteria; biochar; gene diversity; microbial community composition
-
Long-term fertilization legacy effects and temperatures regulate soil microbial function of crop straw decomposition in a greenhouse vegetable field
作者:Ma, Long;Wu, Dongming;Tang, Jiwei;Ai, Chao;Huang, Shaowen;Wu, Dongming;Li, Ruonan;Wang, Liying;Luan, Haoan;Guo, Tengfei
关键词:DNA-SIP; Different nitrogen forms; Fertilization legacy effects; Temperatures response; Carbohydrate-active enzyme gene; Soil nutrient stoichiometry
-
The microbial-driven C dynamics within soil aggregates in walnut orchards of different ages based on microbial biomarkers analysis
作者:Luan, Haoan;Zhang, Xuemei;Liu, Yang;Guo, Suping;Qi, Guohui;Liu, Yingru;Huang, Shaohui;Chen, Jie;Guo, Tengfei
关键词:Walnut plantation ages; Soil aggregates; Microbial characteristics; Soil C dynamics
-
Varying microbial utilization of straw-derived carbon with different long-term fertilization regimes explored by DNA stable-isotope probing
作者:Guo, Tengfei;Zhang, Shuiqing;Yue, Ke;Huang, Shaomin;Zhang, Qian;Song, Dali;Ai, Chao;Zhou, Wei
关键词:Stable isotope probing; Microbial utilizers; Maize straw; Long-term fertilization; Edaphic factors
-
Organic amendment regulates soil microbial biomass and activity in wheat-maize and wheat-soybean rotation systems
作者:Song, Dali;Cui, Jiwen;Zhou, Wei;Liang, Guoqing;He, Ping;Wang, Xiubin;Song, Dali;Shen, Jianbo;Dai, Xianglin;Guo, Tengfei;Huang, Shaomin;Zhang, Shuiqing
关键词:Crop rotation; Organic substitution; Microbial biomass; Enzyme kinetics; MicroResp; Microbial activity and function



