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Long-term integrated soil-crop system management promoted rhizosphere nitrogen cycling and reduced N2O emission of maize
Field Crops Research ( IF 5.6 ) Pub Date : 2024-11-09 , DOI: 10.1016/j.fcr.2024.109641 Ningning Yu, Sher Alam, Baizhao Ren, Bin Zhao, Peng Liu, Jiwang Zhang
Field Crops Research ( IF 5.6 ) Pub Date : 2024-11-09 , DOI: 10.1016/j.fcr.2024.109641 Ningning Yu, Sher Alam, Baizhao Ren, Bin Zhao, Peng Liu, Jiwang Zhang
Agricultural management practices are changing from the high-yield production to high-efficient production and now sustainable production in order to satisfy the increasing demand for food. We attempted to establish a high-yielding and high-efficient maize production practice, Integrated Soil-Crop System Management (ISCM). The ISCM increased yield and nitrogen use efficiency (NUE), which could be due to changes in the composition and function of the rhizosphere bacterial community, and consequently nutrient utilization.
中文翻译:
长期土壤作物系统综合管理促进了玉米根际氮循环,减少了 N2O 排放
为了满足日益增长的食品需求,农业管理实践正在从高产生产转变为高效生产,再到现在的可持续生产。我们试图建立一种高产、高效率的玉米生产实践,即综合土壤作物系统管理 (ISCM)。ISCM 提高了产量和氮利用效率 (NUE),这可能是由于根际细菌群落的组成和功能发生了变化,从而改变了养分利用。
更新日期:2024-11-09
中文翻译:
长期土壤作物系统综合管理促进了玉米根际氮循环,减少了 N2O 排放
为了满足日益增长的食品需求,农业管理实践正在从高产生产转变为高效生产,再到现在的可持续生产。我们试图建立一种高产、高效率的玉米生产实践,即综合土壤作物系统管理 (ISCM)。ISCM 提高了产量和氮利用效率 (NUE),这可能是由于根际细菌群落的组成和功能发生了变化,从而改变了养分利用。