Responses of soil properties, microbial community and crop yields to various rates of nitrogen fertilization in a wheat-maize cropping system in north-central China

文献类型: 外文期刊

第一作者: Zhao, Shicheng

作者: Zhao, Shicheng;Qiu, Shaojun;Zhou, Wei;He, Ping;He, Ping;Zhao, Shicheng;Qiu, Shaojun;Zhou, Wei;He, Ping;Cao, Caiyun;Zheng, Chunlian

作者机构:

关键词: Nitrogen application rate;Winter wheat–summer maize rotation;Soil chemical properties;Soil microbial community structure;Grain yield

期刊名称:AGRICULTURE ECOSYSTEMS & ENVIRONMENT ( 影响因子:5.567; 五年影响因子:6.064 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Excessive nitrogen (N) fertilization is widespread in intensive double cropping system in China and assessment of changes in soil quality and crop production under various N application rates is important for N fertilizer management. A wheat (Triticum aestivum L)-maize (Zea mays L.) rotation experiment was conducted from 2009 to 2012 in north-central China to study the effects of high N fertilization rates on soil chemical properties and microbial community, and to evaluate soil sustainability under reduced N inputs. The N rates tested were 0 (N0), 70 (N1), 140 (N2), 210 (N3), 280 (N4) and 350 kg N ha(-1) (N5) in the maize season, and 0 (N0), 60 (N1), 120 (N2), 180 (N3), 240 (N4) and 300 kg N ha(-1) (N5) in the wheat season, respectively. Soil NO3--N in the 0-100 cm depth, and soil electrical conductivity (EC) and nitrification potential in the 0-20 cm were significantly increased, whilst pH in the 0-20 cm was decreased with increasing N application rates. In addition, the high rates of N fertilization (N4 and N5) increased soil fungal abundance and the ratio of fungi to bacteria compared with lower N rates and the N control; however, N rates did not influence abundance of soil bacteria and actinomycetes, and total phospholipid fatty acid (PLFA). The application of N at 180 and 210 kg N ha(-1) during the wheat and maize seasons, respectively, sustained high yields and enhanced accumulated N recovery efficiency (RENac) compared with higher N rates. Our results indicated that the high N inputs degraded soil quality and changed microbial community structure. A 12.5-40% reduction in the farmers' conventional N application rates was practical to reduce excess N input while maintaining the sustainability of the wheat-maize cropping system in north-central China

分类号: S

  • 相关文献

[1]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

[2]The fate of N-15-labelled urea in an alkaline calcareous soil under different N application rates and N splits. Wang, Xiubin,Zhou, Wei,Liang, Guoqing,Pei, Xuexia,Li, Kejiang.

[3]An optimal regional nitrogen application threshold for wheat in the North China Plain considering yield and environmental effects. Wang, Hongyuan,Zhang, Yitao,Liu, Hongbin,Zhai, Limei,Zhang, Yitao,Chen, Anqiang,Lei, Baokun,Ren, Tianzhi.

[4]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.

[5]Microbial community structure and functional metabolic diversity are associated with organic carbon availability in an agricultural soil. Li Juan,Li Yan-ting,Yang Xiang-dong,Zhang Jian-jun,Lin Zhi-an,Zhao Bing-qiang. 2015

[6]Changes in soil microbial community, enzyme activities and organic matter fractions under long-term straw return in north-central China. Zhao, Shicheng,Zhou, Wei,Qiu, Shaojun,Huang, Shaowen,He, Ping,He, Ping,Li, Kejiang.

[7]Contrasting development of soil microbial community structure under no-tilled perennial and tilled cropping during early pedogenesis of a Mollisol. Li, Na,You, Meng-Yang,Qiao, Yun-Fa,Zou, Wen-Xiu,Han, Xiao-Zeng,Zhang, Bin,Yao, Shui-Hong,Zhang, Yue-Ling,Zhang, Bin.

[8]Reductions of Fe(III) and pentachlorophenol linked with geochemical properties of soils from Pearl River Delta. Chen, Manjia,Tao, Liang,Li, Fangbai,Lan, Qing. 2014

[9]The effect of long-term reclamation on enzyme activities and microbial community structure of saline soil at Shangyu, China. Liu, Chen,Xu, JianMing,Liu, Chen,Ding, NengFei,Fu, QingLin,Guo, Bin,Lin, YiCheng,Li, Hua,Li, Ningyu. 2013

[10]Effects of reclaimed water irrigation and nitrogen fertilization on the chemical properties and microbial community of soil. Guo Wei,Qi Xue-bin,Li Ping,Li Zhong-yang,Fan Xiang-yang,Zhou Yuan,Guo Wei,Zhou Yuan,Andersen, Mathias N.,Qi Xue-bin,Li Ping,Li Zhong-yang,Fan Xiang-yang. 2017

[11]Effects of Permanent Raised Beds on Soil Chemical Properties in a Wheat-Maize Cropping System. Li Hui,He Jin,Wang Qingjie,Li Hongwen,Sivelli, Amerigo,Lu Caiyun,Zheng Zhiqi,Zhang Xiangcai,Lu Zhanyuan. 2013

[12]CARAGANA FABR. PROMOTES REVEGETATION AND SOIL REHABILITATION IN SALINE-ALKALI WASTELAND. Zhang, Lizhen,Fan, JingJing,Meng, Qiuxia,Niu, Yu. 2013

[13]Effect of chemical fertilization and green manure on the abundance and community structure of ammonia oxidizers in a paddy soil. Fang, Yu,Yan, Zhi-Lei,Chen, Ji-Chen,Wang, Fei,Wang, Ming-Kuang,Lin, Xin-Jian. 2015

[14]Soil Microbiological and Biochemical Properties as Affected by Different Long-Term Banana-Based Rotations in the Tropics. Zhong Shuang,Jin Zhiqiang,Zhong Shuang,Zeng Huicai. 2015

[15]Effects of fertilization regimes on tea yields, soil fertility, and soil microbial diversity. Qiu, Shan-Lian,Wang, Li-Min,Huang, Dong-Feng,Lin, Xin-Jian. 2014

[16]Effect of biofumigation and chemical fumigation on soil microbial community structure and control of pepper Phytophthora blight. Wang, Qiujun,Ma, Yan,Yang, Hao,Chang, Zhizhou.

[17]Morphological and yield responses of winter wheat (Triticum aestivum L.) to raised bed planting in Northern China. Wang, Fahong,Kong, Ling'an,Li, Shengdong,Si, Jisheng,Feng, Bo,Zhang, Bin,Wang, Fahong,Sayre, Ken. 2011

[18]Nitrogen Use Efficiency as Affected by Phosphorus and Potassium in Long-Term Rice and Wheat Experiments. He Xin-hua,Shi Xiao-jun,Li Shuang-lai,Sun Xi-fa,He Xin-hua. 2014

[19]Growth, yield and quality of wheat and cotton in relay strip intercropping systems. L.Zhang,L.Zhang,W.van der Werf. 2007

[20]Molecular mapping of quantitative trait loci for kernel morphology traits in a non-1BL.1RS x 1BL.1RS wheat cross. Yonggui Xiao,Shengmei He,Jun Yan,Yong Zhang,Yelun Zhang,Yunpeng Wu,Xianchun Xia,Jichun Tian,Wanquan Ji,Zhonghu He.

作者其他论文 更多>>