数字农科院2.0

Green manure substitution for chemical nitrogen reduces greenhouse gas emissions and enhances yield and nitrogen uptake in rice[sbnd]rice cropping systems

文献类型: 外文期刊

作者: Nano Alemu Daba;Jing Huang;Zhe Shen;Tianfu Han;Md Ashraful Alam;Jiwen Li;Kiya Adare Tadesse;Ntagisanimana Gilbert;Erana Kebede;Tsegaye Gemechu Legesse;Shujun Liu;Lisheng Liu;Kailou Liu;Huimin Zhang

作者机构:

关键词: Functional gene;Greenhouse gas;Methane;Nitrogen substitution;Nitrous oxide;Yield

期刊名称: Field Crops Research

ISSN: 0378-4290

年卷期: 2025 年 322 卷

页码:

收录情况: SCIE(2025版)

摘要: Context: Although nitrogen (N) is important for rice growth, its excessive use can have negative environmental effects, such as greenhouse gas (GHG) emissions. Thus, sustainable and eco-friendly rice production demands precise N management strategies. This includes the use of milk-vetch (MV) as a green manure (GM) for substitution. However, how GM substitution for chemical N fertilizer (NF) affects yield, uptake, methane (CH4) emissions, nitrous oxide (N2O) emissions and related microbial mechanisms in rice[sbnd]rice cropping systems remains poorly understood. Objective: The present study aimed to (i) investigate the effects of MV substitution for NF on grain yield, N uptake, and emissions of CH4, N2O, and GHG intensity; (ii) comparatively analyze the mechanistic effects of major microbial associated with CH4 and N2O emissions under MV substitution for NF; and (iii) identify the optimal substitution level of NF by MV for mitigating GHG emission intensity while improving crop N uptake and yield in rice[sbnd]rice cropping systems. Methods: To address the aforementioned knowledge gap, we conducted a two-year field experiment based on a long-term study established in 2008. Six treatments, i.e., no fertilizer (N0), farmers’ N practice (N100), N100 and MV (N100MV), 80 % N100 and MV (N80MV), 60 % N100 and MV (N60MV) and only MV, were set up in a randomized complete block design in triplicate. Results: Compared with the other treatments, N80MV significantly increased early and late rice yields, with its average N uptake exceeding that of N100, N100MV, N60MV, and MV by 126.3 %, 88.3 %, 54.2 %, and 31.5 %, respectively. The relative yield was strongly related to the N nutrition index (NNI), with the highest mean NNI values of 1.08 and 1.01 observed in N80MV during the early and late rice seasons, respectively. These findings identify N80MV as the optimal fertilization strategy for increasing both N nutrition and productivity. The balance between the mcrA and pmoA genes as well as between carbon (C) and N played a major role in explaining the variation in CH4 emissions, whereas ammonia oxidation, the C:N ratio, available N, and the nirK gene played key roles in controlling N2O emissions. The moderate GWP and relatively high grain yield resulting from N80MV led to the mitigation of GHG emission intensity. Conclusions: The effectiveness of MV substitution for NF in mitigating GHG emissions while improving yield and N uptake in rice[sbnd]rice cropping systems can vary considerably on the basis of the NF levels substituted by MV. We suggest that substituting MV for 20 % N100 is a viable fertilization strategy not only for mitigating the GHG intensity but also for simultaneously improving yield and N uptake in rice[sbnd]rice cropping systems. Implications: Our findings have direct implications for extending our understanding of the dynamics of CH4 and N2O emissions, along with their associated drivers, when GM substitutes for NF in rice[sbnd]rice cropping systems.

分类号:

  • 相关文献

[1]Identifying agronomic practices with higher yield and lower global warming potential in rice paddies: a global meta-analysis. Ping Liao,Yanni Sun,Xiangcheng Zhu,Haiyuan Wang,Yong Wang,Jin Chen,Jun Zhang,Yanhua Zeng,Yongjun Zeng,Shan Huang. 2021

[2]Greenhouse Gas Emissions from Double-Season Rice Field under Different Tillage Practices and Fertilization Managements in Southeast China. Tong Yang,Zhi Yang,Chunchun Xu,Fengbo Li,Fuping Fang,Jinfei Feng. 2023

[3]Green manure substitution reduces carbon and nitrogen footprints and improves net ecosystem economic benefits in double rice systems. Nano Alemu Daba,Jing Huang,Md Ashraful Alam,Jiwen Li,Zhe Shen,Kiya Adare Tadesse,Ntagisanimana Gilbert,Tianfu Han,Erana Kebede,Tsegaye Gemechu Legesse,Dongchu Li,Lisheng Liu,Huimin Zhang. 2025

[4]Green manure and rice straw recycling: A triple-win for productivity, environmental sustainability and net ecosystem economic benefit. Daba, Nano Alemu,Huang, Jing,Alam, Md Ashraful,Gilbert, Ntagisanimana,Tadesse, Kiya Adare,Ahmed, Imtiaz,Abdelaziz, Mahmoud,Li, Jiwen,Kebede, Erana,Legesse, Tsegaye Gemechu,Liu, Shujun,Liu, Lisheng,Zhang, Huimin. 2025

[5]Nanoparticles of Zinc Oxides Mitigated N2O Emissions in Tea Plantation Soil. Jing Wang,Linfang Guo,Fengmin Yang,Jian Xiang,Lizhi Long,Kang Ni. 2024

[6]Characteristics of nitrous oxide emissions and the affecting factors from vegetable fields on the North China Plain. Yan, Hongliang,Guo, Liping,Fan, Jingwei,Diao, Tiantian,Lin, Miao,Zhang, He,Lin, Erda,Xie, Liyong,Lin, Miao,Zhang, He.

[7]Insights into the shift of microbial community related to nitrogen cycle, especially N2O in vanadium-polluted soil. Xuna Liu,Lina Pang,Yao Yue,Hongna Li,Efthalia Chatzisymeon,Yuanyuan Lu,Ping Yang. 2023

[8]Global cropland nitrous oxide emissions in fallow period are comparable to growing-season emissions. Ziyin Shang,Xiaoqing Cui,Kees Jan van Groenigen,Matthias Kuhnert,Mohamed Abdalla,Jiafa Luo,Weijian Zhang,Zhenwei Song,Yu Jiang,Pete Smith,Feng Zhou. 2024

[9]On the adjusted N2O emission factor in dry subhumid, semiarid, and arid regions. Ziyin Shang,Xiaoqing Cui,Kees Jan van Groenigen,Matthias Kuhnert,Mohamed Abdalla,Jiafa Luo,Weijian Zhang,Zhenwei Song,Yu Jiang,Pete Smith,Feng Zhou. 2024

[10]Temporal variation of greenhouse gas emission in gestation swine building. Dong, H.,Zhu, Z.,Li, Y.,Tao, X.,Xin, H.. 2005

[11]Plough Tillage Maintains High Rice Yield and Lowers Greenhouse Gas Emissions under Straw Incorporation in Three Rice-Based Cropping Systems. Danso, Frederick,Bankole, Oluwaseyi Oyewale,Zhang, Nan,Dong, Wenjun,Zhang, Kun,Lu, Changying,Shang, Ziyin,Li, Gexing,Deng, Aixing,Song, Zhenwei,Zheng, Chengyan,Zhang, Jun,Zhang, Weijian. 2023

[12]Assessing impacts of alternative fertilizer management practices on both nitrogen loading and greenhouse gas emissions in rice cultivation. Zhao, Zheng,Yue, Yubo,Sha, Zhimin,Cao, Linkui,Li, Changsheng,Deng, Jia,Zhang, Hanlin,Gao, Maofang. 2015

[13]The effect of grassland conversion on CH4 and N2O emissions and removals. Li, Y,Lin, ED,Yang, ZW,Wang, YQ. 2002

[14]Interactive effects of straw incorporation and tillage on crop yield and greenhouse gas emissions in double rice cropping system. Zhang, Jun,Lamine, Samoura Mohamed,Jiang, Yu,Afreh, Daniel,Qian, Haoyu,Feng, Xiaomin,Zheng, Chengyan,Deng, Aixing,Song, Zhenwei,Zhang, Weijian,Hang, Xiaoning.

[15]CH4, NH3, N2O and NO emissions from stored biogas digester effluent of pig manure at different temperatures. Wang, Yue,Dong, Hongmin,Zhu, Zhiping,Li, Lulu,Zhou, Tanlong,Jiang, Bo,Wang, Yue,Dong, Hongmin,Zhu, Zhiping,Xin, Hongwei.

[16]EMISSIONS OF GREENHOUSE GASES FROM A TYPICAL CHINESE SWINE FARROWING BARN. Dong, H.,Zhu, Z.,Shang, B.,Kang, G.,Zhu, H.,Xin, H..

[17]Greenhouse gas emissions from swine barns of various production stages in suburban Beijing, China. Dong, H.,Zhu, Z.,Shang, B.,Kang, G.,Zhu, H.,Xin, H..

[18]Estimation of nitrous oxide and methane emission from livestock of urban agriculture in Beijing. Liang, Long,Wu, Wenliang,Meng, Fanqiao,Liang, Long,Lal, Rattan,Du, Zhangliu.

[19]Differences in rice yield and CH4 and N2O emissions among mechanical planting methods with straw incorporation in Jianghuai area, China. Hang, Xiaoning,Jiang, Yu,He, Ruiyin,Zhang, Weijian,Song, Chunlian,Zhang, Xin,Deng, Aixing,Lu, Ming,Zhang, Weijian.

[20]Seasonal changes of CO2, CH4 and N2O fluxes in different types of alpine grassland in the Qinghai-Tibetan Plateau of China. Li, Yuanyuan,Dong, Shikui,Liu, Shiliang,Wang, Xuexia,Su, Xukun,Zhang, Yong,Tang, Lin,Zhao, Haidi,Wu, Xiaoyu,Zhou, Huakun,Cao, Guangmin,Gao, Qingzhu.

作者其他论文 更多>>