Organic amendments increase corn yield by enhancing soil resilience to climate change

文献类型: 外文期刊

第一作者: Song, Zhenwei

作者: Song, Zhenwei;Deng, Aixing;Zheng, Chengyan;Zhang, Weijian;Gao, Hongjun;Zhu, Ping;Peng, Chang;Mannaf, Md Abdul;Islam, Md Nurul

作者机构:

关键词: Long-term fertilization;Maize cropping;Soil quality;Global warming;Northeast China

期刊名称:CROP JOURNAL ( 影响因子:4.407; 五年影响因子:5.687 )

ISSN: 2095-5421

年卷期: 2015 年 3 卷 2 期

页码:

收录情况: SCI

摘要: A 22-year field experiment was conducted in Gongzhuling, Jilin province, China to investigate corn yield response to fertilization practice. Compared to an unfertilized control (CK), all fertilization treatments, including inorganic nitrogen fertilizer only (N), balanced inorganic fertilizers (NPK), NPK plus corn straw (SNPK), and NPK plus farmyard manure (MNPK), resulted in significant increases in corn yield. However, only organic matter amendments sustained increasing yield trends, with annual rates of 0.137 and 0.194 t ha(-1) for the SPNK and MNPK treatments, respectively (P < 0.05). During the 22 years, the daily mean, maximum and minimum temperatures increased by 0.50, 0.53, and 0.46 degrees C per decade, whereas precipitation displayed no significant change but showed large seasonal variation. According to a regression analysis, increased air temperature exerted positive effects on corn yields under the SNPK and the MNPK treatments. Under both treatments, soil organic carbon contents and soil nutrient availabilities increased significantly compared to their initial levels in 1990, whereas soil bulk density and total porosity changed slightly under the two treatments, which showed higher soil water storage than other treatments. In contrast, significant increases in soil bulk density and decreases in soil total porosity and soil nutrient availability were observed under the CK, N and NPK treatments. The contributions of soil fertility to corn yield were 28.4%, 37.9%, 38.4%, 39.0%, and 42.9% under CK, N, NPK, SNPK, and MNPK treatments, respectively, whereas climate changes accounted for 27.0%, 14.6%, 12.4%, 11.8%, and 10.8%. These results indicate that, in Northeast China, organic matter amendments can mitigate negative and exploit positive effects of climate change on crop production by enhancing soil quality. (C) 2015 Crop Science Society of China and Institute of Crop Science, CAAS. Production and hosting by Elsevier B.V.

分类号:

  • 相关文献

[1]Progressive and active adaptations of cropping system to climate change in Northeast China. Chen, Changqing,Qian, Chunrong,Zhang, Weijian,Deng, Aixing,Zhang, Weijian. 2012

[2]Will higher minimum temperatures increase corn production in Northeast China? An analysis of historical data over 1965-2008. Chen, Changqing,Lei, Chengxia,Qian, Chunrong,Zhang, Weijian,Deng, Aixing,Zhang, Weijian,Hoogmoed, Willem. 2011

[3]Chemical fertilizers could be completely replaced by manure to maintain high maize yield and soil organic carbon (SOC) when SOC reaches a threshold in the Northeast China Plain. Li Hui,Feng Wen-ting,Sun Nan,Xu Ming-gang,Li Hui,Feng Wen-ting,He Xin-hua,Zhu Ping,Gao Hong-jun. 2017

[4]Response of grain yield to plant density and nitrogen rate in spring maize hybrids released from 1970 to 2010 in Northeast China. Qian, Chunrong,Yu, Yang,Gong, Xiujie,Jiang, Yubo,Zhao, Yang,Yang, Zhongliang,Hao, Yubo,Li, Liang,Song, Zhenwei,Zhang, Weijian. 2016

[5]Genetic analyses of heading date of Japonica rice cultivars from Northeast China. Wei, Xiangjin,Jiang, Ling,Xu, Junfeng,Zhang, Wenwei,Lu, Guangwen,Zhang, Yongsheng,Wan, Jianmin,Wan, Jianmin. 2008

[6]Response of maize phenology to climate warming in Northeast China between 1990 and 2012. Li, Zhengguo,Yang, Peng,Tang, Huajun,Wu, Wenbin,Liu, Zhenhuan,Zhang, Li,Li, Zhengguo,Yang, Peng,Tang, Huajun,Wu, Wenbin,Liu, Zhenhuan,Zhang, Li,Yin, He.

[7]Geographical Variation of Climate Change Impact on Rice Yield in the Rice-Cropping Areas of Northeast China during 1980-2008. Liu, Zhenhuan,Zhang, Guojie,Yang, Peng. 2016

[8]Catastrophic Risk Assessment of Crops Caused by Flood Based on Vulnerability-Using Northeast China as a Case. Zhao, Sijian,Zhang, Qiao. 2014

[9]Model-based analysis of spatio-temporal changes in land use in Northeast China. Xia Tian,Wu Wenbin,Xia Tian,Wu Wenbin,Zhou Qingbo,Yu Qiangyi,Yang Peng,Verburg, Peter H.,Ye Liming,Ye Liming. 2016

[10]Spatio-temporal dynamics of maize cropping system in Northeast China between 1980 and 2010 by using spatial production allocation model. Tan Jieyang,Yang Peng,Wu Wenbin,Zhang Li,Li Zhipeng,Tang Huajun,Li Zhengguo,Liu Zhenhuan,You Liangzhi. 2014

[11]Divergent Hd1, Ghd7, and DTH7 Alleles Control Heading Date and Yield Potential of Japonica Rice in Northeast China. Ye, Jing,Niu, Xiaojun,Yang, Yaolong,Wang, Shan,Xu, Qun,Yuan, Xiaoping,Yu, Hanyong,Wang, Yiping,Feng, Yue,Wei, Xinghua,Ye, Jing,Wang, Shu. 2018

[12]Clustering analysis of regional reference evapotranspiration and its components based on climatic variables across northeast China, 1961-2010. Liu, Yuan,Liu, Buchun,Yang, Xiaojuan,Bai, Wei,Liu, Yuan,Liu, Buchun,Yang, Xiaojuan,Bai, Wei,Liu, Yuan,Liu, Buchun,Yang, Xiaojuan,Bai, Wei. 2016

[13]The Application of China-CGMS in the Main Crop Growth Monitoring in Northeast China. Huang Qing,Wu Wenbin,Teng Fei,Li Dandan,Ren Jianqiang,Deng Hui. 2012

[14]Spatio-Temporal Changes in the Rice Planting Area and Their Relationship to Climate Change in Northeast China: A Model-Based Analysis. Xia Tian,Wu Wen-bin,Zhou Qing-bo,Yu Qiang-yi,Yang Peng,Tang Hua-jun,Verburg, Peter H.,Lu Zhong-jun. 2014

[15]Estimates of N2O Emissions and Mitigation Potential from a Spring Maize Field Based on DNDC Model. Li Hu,Qiu Jian-Jun,Wang Li-gang,Xu Ming-yi,Liu Zhi-qiang,Wang Wei. 2012

[16]Soil Organic Matter Spatial Distribution Change over the Past 20 Years and Its Causes in Northeast. Yao, Yanmin,Tang, Huajun,Tang, Pengqin,Yu, Shikai,Wang, Deying,Si, Haiqing,Chen, Youqi,He, Yingbin. 2013

[17]Spatio-temporal responses of cropland phenophases to climate change in Northeast China. Li Zhengguo,Tang Huajun,Yang Peng,Wu Wenbin,Chen Zhongxin,Zhou Qingbo,Zhang Li,Zou Jinqiu,Li Zhengguo,Tang Huajun,Yang Peng,Wu Wenbin,Chen Zhongxin,Zhou Qingbo,Zhang Li,Zou Jinqiu. 2012

[18]Assess the Accuracy of the Globcover Cultivated Lan d Data in Northeast China. Zhang, Li,Wu, Wenbin,Zhou, Qingbo,Chen, Zhongxin,Li, Zhengguo,Wu, Wenbin,Zhou, Qingbo,Chen, Zhongxin,Li, Zhengguo. 2012

[19]Distribution of Soil Organic Carbon Fractions Along the Altitudinal Gradient in Changbai Mountain, China. Zhang Min,Zhang Xiao-Ke,Liang Wen-Ju,Jiang Yong,Dai Guan-Hua,Wang Xu-Gao,Han Shi-Jie,Zhang Min,Zhang Min. 2011

[20]Reserving winter snow for the relief of spring drought by film mulching in northeast China. Jia, Hongchang,Zhang, Yong,Tian, Shiyan,Emon, Reza Mohammad,Wu, Tingting,Han, Tianfu,Jia, Hongchang,Yan, Hongrui,Lu, Wencheng,Zhang, Yong,Yang, Xingyong,Siddique, Kadambot H. M..

作者其他论文 更多>>