数字农科院2.0

Nitrogen Application and Rhizosphere Effect Exert Opposite Effects on Key Straw-Decomposing Microorganisms in Straw-Amended Soil

文献类型: 外文期刊

作者: Yuanzheng Zhao;Shiyu Wang;Meiling Zhang;Li Zeng;Liyu Zhang;Shuyu Huang;Rong Zhang;Wei Zhou;Chao Ai

作者机构:

关键词: DNA-SIP;key straw-decomposing microorganisms;rhizosphere;straw decomposition

期刊名称: Microorganisms

ISSN: 2076-2607

年卷期: 2024 年 12 卷 3 期

页码:

收录情况: SCIE(2024版)

摘要: Crop residue decomposition is an important part of the carbon cycle in agricultural ecosystems, and microorganisms are widely recognized as key drivers during this process. However, we still know little about how nitrogen (N) input and rhizosphere effects from the next planting season impact key straw-decomposing microbial communities. Here, we combined amplicon sequencing and DNA-Stable Isotope Probing (DNA-SIP) to explore these effects through a time-series wheat pot experiment with four treatments: 13C-labeled maize straw addition with or without N application (S1N1 and S1N0), and no straw addition with or without N application (S0N1 and S0N0). The results showed that straw addition significantly reduced soil microbial alpha diversity in the early stages. Straw addition changed microbial beta diversity and increased absolute abundance in all stages. Growing plants in straw-amended soil further reduced bacterial alpha diversity, weakened straw-induced changes in beta diversity, and reduced bacterial and fungal absolute abundance in later stages. In contrast, N application could only increase the absolute abundance of soil bacteria and fungi while having little effect on alpha and beta diversity. The SIP-based taxonomic analysis of key straw-decomposing bacteria further indicated that the dominant phyla were Actinobacteria and Proteobacteria, with overrepresented genera belonging to Vicinamibacteraceae and Streptomyces. Key straw-decomposing fungi were dominated by Ascomycota, with overrepresented genera belonging to Penicillium and Aspergillus. N application significantly increased the absolute abundance of key straw-decomposing microorganisms; however, this increase was reduced by the rhizosphere effect. Overall, our study identified key straw-decomposing microorganisms in straw-amended soil and demonstrated that they exhibited opposite responses to N application and the rhizosphere effect.

分类号:

  • 相关文献

[1]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. Long Ma,Ruonan Li,Haoan Luan,Jiwei Tang,Liying Wang,Tengfei Guo,Shaowen Huang. 2024

[2]Keystone microbial taxa drive the accelerated decompositions of cellulose and lignin by long-term resource enrichments. Alin Song,Jiayin Zhang,Duanyang Xu,Enzhao Wang,Jingjing Bi,Bismark Asante-Badu,Marie Claire Njyenawe,Miaomiao Sun,Piao Xue,Sai Wang,Fenliang Fan. 2022

[3]Long-term fertilization legacy effects and temperatures regulate soil microbial function of crop straw decomposition in a greenhouse vegetable field. Long Ma,Dongming Wu,Ruonan Li,Haoan Luan,Jiwei Tang,Liying Wang,Tengfei Guo,Chao Ai,Shaowen Huang. 2025

[4]Divergent Trajectory in the Succession of Maize Straw Decomposing Fungal Populations Due to Different Fertilizer Regime as Revealed by Stable Isotope Probing. Wang, Yaxian,Zhang, Huiyu,Guo, Tengfei,Ai, Chao,Xu, Chunyan,Sheng, Kai,Wang, Yilun,Li, Hui,Zhang, Qian. 2025

[5]Long-Term Straw Decomposition In Agro-Ecosystems D.escribed By A Unified T hree-Exponentiation Equation With Thermal Time. Cai, AD, Liang, GP, Zhang, XB, Zhang, WJ, Li, L, Rui, YC, Xu, MG, Luo, YQ. 2018

[6]Exogenous microbial antagonism affects the bioaugmentation of humus formation under different inoculation using Trichoderma reesei and Phanerochaete chrysosporium. Wang L.,Sun K.,Pan S.,Wang S.,Yan Z.,Zhu L.,Yang X.. 2023

[7]Temperature Matters More than Fertilization for Straw Decomposition in the Soil of Greenhouse Vegetable Field. Ma, Long,Li, Ruonan,Luan, Haoan,Tang, Jiwei,Wang, Liying,Huang, Shaowen. 2024

[8]Successional action of Bacteroidota and Firmicutes in decomposing straw polymers in a paddy soil. Junjie Huang,Kailin Gao,Lu Yang,Yahai Lu. 2023

[9]Effect of straw decomposition on hexavalent chromium removal by straw: Significant roles of surface potential and dissolved organic matter. Xia, Xing,Zhang, Xingbin,Liu, Peng,Zhang, Yongyi,Hou, Tingting,Zhang, Ranran,He, Jiehong,Fang, Guodong,Yang, Jianjun,Wu, Xiangwei. 2024

[10]Interaction between POM and pore structure during straw decomposition in two soils with contrasting texture. Ding, Tianyu,Guo, Zichun,Qian, Yongqi,Wang, Yuekai,Jiang, Fahui,Zhang, Zhongbin,Peng, Xinhua. 2024

[11]Soil pore structure shaped compositions and structures of soil microbial community during 13C-labelled maize straw decomposition. Tianyu Ding,Rui Qian,Zichun Guo,Xianjin Huang,Xinhua Peng. 2024

[12]Effects of size and amount and burial depth on early decomposition of maize straw and the links to microbial and nematode communities in the Mollisol of China. Futao Zhang,Tianshu Wang,Heng Jiang,Bin Zhang,Ya Han,Shuihong Yao. 2025

[13]High soil salinity reduces straw decomposition but primes soil organic carbon loss. Mengmeng Chen,Yakov Kuzyakov,Jie Zhou,Kazem Zamanian,Shang Wang,Khatab Abdalla,Jing Wang,Xiaobin Li,Haoruo Li,Hongyuan Zhang,Kevin Z. Mganga,Yuyi Li,Evgenia Blagodatskaya. 2025

[14]Nitrogen addition accelerated straw in-situ decomposition by promoting specific microbial taxa growth and straw decomposing enzyme activities. Tengfei Guo,Mengyuan Wang,Yulu Chen,Ke Yue,Long Ma,Shaomin Huang,Xinpeng Xu,Xiao Song,Sumiao Su,Zekun Zhang,Qian Zhang,Keke Zhang. 2025

[15]Maize straw-driven phosphorus mobilization in two alkaline soils: Microbial community shifts and agronomic implications. Darma, Aminu,Jianjun, Yang,Jin, Liu,Meili, Sun,Jiaqi, Chen,Bloem, Elke,Tianwen, Chen. 2026

[16]Different roles of rhizosphere effect and long-term fertilization in the activity and community structure of ammonia oxidizers in a calcareous fluvo-aquic soil. Ai, Chao,Liang, Guoqing,Sun, Jingwen,Wang, Xiubin,He, Ping,Zhou, Wei. 2013

[17]A distinctive root-inhabiting denitrifying community with high N2O/(N2O+N-2) product ratio. Ai, Chao,Liang, Guoqing,Wang, Xiubin,Sun, Jingwen,He, Ping,Zhou, Wei,He, Ping.

[18]The foliar uptake and downward translocation of trichloroethylene and 1,2,3-trichlorobenzene in air-plant-water systems. Su, Yuhong,Liang, Yongchao.

[19]2,4-Dihydroxy-7-methoxy-1,4-benzoxazin-3-one (DIMBOA) and 6-Methoxy-benzoxazolin-2-one (MBOA) Levels in the Wheat Rhizosphere and Their Effect on the Soil Microbial Community Structure. Kong, Chui-Hua,Zhang, Song-Zhu,Zheng, Yong-Quan,Li, Jing,Liu, Xing-Gang.

[20]Paenibacillus populi sp nov., a novel bacterium isolated from the rhizosphere of Populus alba. Han, Tong-Yan,Tong, Xiao-Mei,Wang, Yan-Wei,Wang, Hui-Min,Chen, Xiao-Rong,Kong, De-Long,Guo, Xiang,Ruan, Zhi-Yong.

作者其他论文 更多>>