Optimizing fertilization depth to promote yield performance and economic benefit in maize for hybrid seed production

Author:

Tian Zhonghong,Zhang Mengjie,Liu Chang,Xiang Yingzhou,Hu Yarong,Wang Yuhao,Liu Enke,Wu Peng,Ren Xiaolong,Jia Zhikuan,Siddique Kadambot H.M.,Zhang Peng

Funder

National Natural Science Foundation of China

Natural Science Basic Research Program of Shaanxi Province

National Key Research and Development Program of China

Publisher

Elsevier BV

Reference46 articles.

1. Bao, S.D., 2000. Soil Agricultural–Chemical Analysis. China Agric. Press, Beijing.

2. Suitable fertilizer application depth enhances the efficient utilization of key resources and improves crop productivity in rainfed farmland on the loess plateau, China;Chen;Front. Plant Sci.,2022

3. Optimizing fertilization depth can promote sustainable development of dryland agriculture in the Loess Plateau region of China by improving crop production and reducing gas emissions;Chen;Plant Soil,2022

4. How do different fertilization depths affect the growth, yield, and nitrogen use efficiency in rain-fed summer maize?;Chen;Field Crops Res.,2023

5. Effects of nitrogen application rate on grain yield and grain nitrogen concentration in two maize hybrids with contrasting nitrogen remobilization efficiency;Chen;Eur. J. Agron.,2015

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