数字农科院2.0

Effects of rice straw biochar application rates on soil aggregate biogeochemistry and linkages to microbial community structure and enzyme activities

文献类型: 外文期刊

作者: Jiajun Wu;Zichuan Li;Yong Li;Jiawen Liu;Cheng Liu;Yanjun Chai;Chao Ai;Qaiser Hussain;Marios Drosos;Shengdao Shan

作者机构:

关键词: Aggregates;Enzyme activity;Rice straw biochar;Soil microorganisms

期刊名称: Soil and Tillage Research

ISSN: 0167-1987

年卷期: 2025 年 252 卷

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: Biochar, a widely adopted soil amendment, has been widely recognized for its potential to improve crop yields and soil nutrients significantly. This enhancement is primarily attributed to the crucial role of soil microorganisms, whose contribution to soil fertility is significant and often underappreciated. However, the effects of varying biochar application rates on soil functional biota, particularly within aggregates that expand soil spatial heterogeneity, remain unclear. Understanding the relationship between nutrient dynamics and microbial community composition in these aggregates is essential for comprehending the intricate connections between soil microbiomes and related biogeochemical cycles. This study utilized long-term experimental soils, including treatments with no fertilizer, chemical fertilizer alone, and chemical fertilizer combined with rice straw biochar at gradient application rates (22.5, 45, 90 t·hm−2). The responses of microbial community structure and soil enzyme activities in whole soil and aggregates to different biochar application rates were investigated. Results showed that, compared to NPK treatment, biochar significantly increased bacterial and fungal diversity in macroaggregates. It also notably increased the relative abundance of Proteobacteria and Ascomycota in soil and aggregates, and at the same time reduced the relative abundance of Chloroflexi and Basidiomycota. Furthermore, carbon and phosphorus cycle-related enzyme activities increased significantly with higher biochar application rates. However, the activity of NAG, a nitrogen cycle-related enzyme, decreased as biochar application increased. Mantel analysis revealed that the relationship between microorganisms, enzyme activity, and soil nutrients was closest at a biochar application rate of 45 t·hm−2. Structural equation modeling demonstrated that macroaggregates exhibited the most complex nutrient accumulation relationships, with bacterial and fungal diversity promoting nutrient accumulation. In conclusion, moderate biochar application induced the most intricate and closely connected microbial networks in macroaggregates, promoting soil nutrient cycling.

分类号:

  • 相关文献

[1]Separation of soil microbial community structure by aggregate size to a large extent under agricultural practices during early pedogenesis of a Mollisol. Li, Na,Qiao, Yun-Fa,Zou, Wen-Xiu,You, Meng-Yang,Han, Xiao-Zeng,Zhang, Bin,Yao, Shui-Hong,Zhang, Bin.

[2]Relationships between Glomalin-Related Soil Protein in Water-Stable Aggregate Fractions and Aggregate Stability in Citrus Rhizosphere. Wu, Qiang-Sheng,Cao, Ming-Qin,Zou, Ying-Ning,Wang, Shuang,Li, Yan,He, Xin-Hua,He, Xin-Hua. 2013

[3]Effects of tillage management on cbbL-carrying bacteria and soil organic carbon dynamics across aggregate size classes in the farmland of North China Plain. Yao Yao,Xiaolin Shen,Lili Wang,Jianning Zhao,Lingxuan Gong,Su Wang,Linyi Wu,Gang Li,Weiming Xiu,Guilong Zhang. 2023

[4]Changes in salinity, aggregates and physicomechanical quality induced by biochar application to coastal soil. Zong, Yutong,Liu, Yaojun,Li, Yanqing,Ma, Ronghui,Malik, Zaffar,Xiao, Qing,Li, Zichuan,Zhang, Jin,Shan, Shengdao. 2023

[5]Soil organic and inorganic carbon sequestration by consecutive biochar application: Results from a decade field experiment. Siwei Shi,Qingzhong Zhang,Yilai Lou,Zhangliu Du,Qian Wang,Ning Hu,Yidong Wang,Anna Gunina,Jiqing Song. 2021

[6]Distinct biophysical and chemical mechanisms governing sucrose mineralization and soil organic carbon priming in biochar amended soils: evidence from 10 years of field studies. Haoli Zhang,Tao Ma,Lili Wang,Xiuling Yu,Xiaorong Zhao,Weida Gao,Lukas Van Zwieten,Bhupinder Pal Singh,Guitong Li,Qimei Lin,David R. Chadwick,Shenggao Lu,Jianming Xu,Yu Luo,David L. Jones,Peduruhewa H. Jeewani. 2024

[7]Accumulation and distribution of cadmium at organic-mineral micro-interfaces across soil aggregates. Li, Qi,Li, Linfeng,Yin, Bohao,Lin, Xiaoyang,Xiao, Anwen,Xue, Weijie,Liu, Hengjie,Li, Yichun. 2025

[8]Conservation Tillage Increases Carbon Storage by Regulating Mineral-Mediated Aggregate Stability and Carbon Chemistry. Zixuan Han,Aurore Degré,Shengping Li,Xiaojun Song,Huizhou Gao,Angyuan Jia,Qiqi Gao,Xueping Wu,Aizhen Liang. 2025

[9]Effect of Trichoderma longbrachiatum T2 on functional diversity of cucumber rhizomicrobes. Li, Shigui,Lu, Tianxiao,Zhang, Xiaoxia,Gu, Gingang,Niu, Yongchun.

[10]A 3-year field investigation of impacts of Monsanto's transgenic Bt-cotton NC 33B on rhizosphere microbial communities in northern China. Xie, Ming,Wu, Gang,Peng, De-Liang,Yu, Wen-Bin.

[11]Effects Of Trifluralin On The S.oil Microbial Community And F unctional Groups Involved In Nitrogen Cycling. Du, PQ,Wu, XH,Xu, J,Dong, FS,Liu, XG,Zheng, YQ. 2018

[12]Earthworms synergize with indigenous soil functional microorganisms to accelerate the preferential degradation of the highly toxic S-enantiomer of the fungicide imazalil in soil. Lingxi Han,Kuan Fang,Xiangwei You,Yiqiang Li,Xiuguo Wang,Jun Wang. 2023

[13]Integration of Grape-Duck Production Pattern Boosts Duck Behavior, Meat Quality, Fecal Microbiota and Soil Microorganisms. Zhou Y.,Yan C.,Chen D.,Zhang C.,Zhao X.. 2023

[14]Grazing Regulates Changes in Soil Microbial Communities in Plant-Soil Systems. Zhang, Yu,Wang, Miao,Wang, Xu,Li, Ruiqiang,Zhang, Ruifu,Xun, Weibing,Li, Hui,Xin, Xiaoping,Yan, Ruirui. 2023

[15]Response of soil microbial communities and rice yield to nitrogen reduction with green manure application in karst paddy areas. Junyu Pu,Zhongyi Li,Hongqin Tang,Guopeng Zhou,Caihui Wei,Wenbin Dong,Zhenjiang Jin,Tieguang He. 2023

[16]Dissecting the combined effects of cultivar, fertilization, and irrigation on rhizosphere bacterial communities and nitrogen productivity in rice. Yi Xie,Zhenchang Wang,Xinxin Cheng,Rangjian Qiu,Yousef Alhaj Hamoud,Cheng Hong,Xingyu Zong,Yaosheng Wang,Evgenios Agathokleous,Xiangping Guo. 2022

[17]Mechanisms of biochar-based organic fertilizers enhancing maize yield on a Chinese Chernozem: Root traits, soil quality and soil microorganisms. Wenhao Feng,Antonio Rafael Sánchez-Rodríguez,Nataliya Bilyera,Junqiang Wang,Xiquan Wang,Yehui Han,Baoxin Ma,Hongyuan Zhang,Frank Yonghong Li,Jie Zhou,Yuyi Li. 2024

[18]Influence of Intercropping Arisaema amurense with Acanthopanax senticosus on Soil Microbial Community and the Effective Ingredients of A. senticosus. Zhu, Jiapeng,Zhang, Yayu,Shao, Cai,Lv, Bochen,Liang, Hao,Cao, Weiyu,Zhang, Guojia,Sun, Hai. 2024

[19]Impacts of Solidago canadensis and Erigeron canadensis co-invasion on soil microbial communities. He, Mengying,Liu, Tingting,Liu, Yaqi,Long, Yiyi,Li, Yue,Xie, Qingsong,Zhang, Zhen. 2024

[20]Intercropping Between Panax ginseng and Arisaema amurense Improves Ginseng Quality by Improving Soil Properties and Microbial Communities. Bochen Lv,Hai Sun,Weiyu Cao,Jiapeng Zhu,Hao Liang,Hongjie Long,Yanmei Cui,Cai Shao,Yayu Zhang. 2025

作者其他论文 更多>>