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Featured researches published by Sui Peng.


Plant Soil and Environment | 2017

Effect of nitrogen regimes on narrowing the magnitude of maize yield penalty caused by high temperature stress in North China Plain

Yan Peng; Chen Yuanquan; Dadouma Adamou; Tao Zhiqiang; Sui Peng

Yan P., Chen Y.Q., Dadouma A., Tao Z.Q., Sui P. (2017): Effect of nitrogen regimes on narrowing the magnitude of maize yield penalty caused by high temperature stress in North China Plain. Plant Soil Environ., 63: 131–138. Further enhancement of maize (Zea mays L.) productivity will benefit from a thorough understanding of thermotolerance. The effects of nitrogen fertilization regimes (ratio of nitrogen (N) doses prior to planting: V7:V15:R3) on reducing yield penalty imposed by high temperature stress are discussed in this study. Field experiments were conducted in 2013 and 2014 using three nitrogen fertilization regimes (N1 – 120:180:0:0; N2 – 60:90:150:0; N3 – 60:90:60:90) and CK (control) treatment (1:0:0:0) to discuss the effect of nitrogen fertilization regimes on alleviating high temperature stress of spring maize. Total N rates for 2013 and 2014 were 280 and 300 kg/ha, respectively. Yield in 2013 and 2014 was averaged as 9.37 and 12.35 t/ha for N3, respectively, which was 13.47% higher than CK. During the grain-filling stage, leaf area index and the SPAD (soil plant analysis development) value in N3 were the highest, but electrical conductivity and malondialdehyde content of ear leaf in N3 were the lowest. Moreover, photosynthetic rate of ear leaf in N3 increased by 9.95% compared to CK. These results indicate that nitrogen fertilization regimes, especially with N3 treatment, can help maintain relatively higher photosynthetic supply capacity during the grain-filling stage under high temperature stress, thereby resulting in improved grain yield.


Zuowu Xuebao | 2012

Influence of Planting Density on Root Spatio-Temporal Distribution of Different Types of Maize under High-Yielding Cultivation Conditions

Li Zongxin; Chen Yuanquan; Wang Qingcheng; Liu Kaichang; Gao Wang-sheng; Sui Peng


Journal of China Agricultural University | 2015

Effects of agricultural organic wastes incorporation on soil organic carbon and microbial carbon.

Long Pan; Sui Peng; Gao Wang-sheng; Wang BinBin; Yan LingLing; Xing Yuan; Chen Yuanquan


Journal of China Agricultural University | 2014

Effects of agricultural organic wastes incorporation on soil water-stable aggregates and C, N contents.

Long Pan; Gao Wang-sheng; Sui Peng; Yan LingLing; Chen Yuanquan


Chinese agricultural science bulletin | 2011

Effects of Different Fertilizing Treatments on Soil Nutrient and Yield of Wheat

Wang Hongjiao; Sui Peng; Shi Yanqin; Xiong Jie; Chen Yuanquan


Transactions of the Chinese Society of Agricultural Engineering | 2010

Effect of topsoil thickness on soil organic carbon in high-yield and irrigated farmland in North China.

Shi Yanqin; Gao Wang-sheng; Chen Yuanquan; Sui Peng; Yang Bin; Wang Hongjiao; Nie Zijin


Resources Conservation and Recycling | 2017

エメルギー会計による農業システムにおける再利用の持続可能性評価【Powered by NICT】

Wang Xiaolong; Li Zhejin; Long Pan; Yan LingLing; Gao Wang-sheng; Chen Yuanquan; Sui Peng


Zhongguo Shengtai Nongye Xuebao | 2016

河北省の低平原における区春玉米 熟 熟の水生態と食糧安全分析【JST・京大機械翻訳】

Yan Peng; Chen Yuanquan; Zhang Xuepeng; Tao Zhiqiang; Yang Xiaolei; Sui Peng


Zhongguo Nongye Daxue Xuebao | 2016

文献計量に基づく華北地域における農業用水問題の研究状況分析【JST・京大機械翻訳】

Yan Peng; Chen Yuanquan; Sui Peng


Zhongguo Nongye Daxue Xuebao | 2016

Status and trends of researches on agriculture water issues in North China Plain:Based on bibliometric methods

Yan Peng; Chen Yuanquan; Sui Peng

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Chen Yuanquan

China Agricultural University

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Gao Wang-sheng

China Agricultural University

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Shi Yanqin

China Agricultural University

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Wang Hongjiao

China Agricultural University

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Nie Zijin

China Agricultural University

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Yang Bin

China Agricultural University

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