265
Views
34
CrossRef citations to date
0
Altmetric
Original Articles

Genotypic Difference in Nitrogen Acquisition Ability in Maize Plants Is Related to the Coordination of Leaf and Root Growth

, , &
Pages 317-330 | Received 13 Sep 2004, Accepted 06 May 2005, Published online: 14 Feb 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Jing Chen, Shaodong Liu, Siping Zhang, Changwei Ge, Qian Shen, Huijuan Ma, Xiaomeng Zhang, Helin Dong, Xinhua Zhao & Chaoyou Pang. (2021) Nitrogen modulates cotton root morphology by affecting abscisic acid (ABA) and salicylic acid (SA) content. Archives of Agronomy and Soil Science 67:12, pages 1722-1738.
Read now

Articles from other publishers (32)

Yuanyuan Liang, Junbo Wang, Zeping Wang, Desheng Hu, Ying Jiang, Yanlai Han & Yi Wang. (2024) Fulvic acid alleviates the stress of low nitrogen on maize by promoting root development and nitrogen metabolism. Physiologia Plantarum 176:2.
Crossref
Xiaoying Chen, Hao Ren, Jiwang Zhang, Bin Zhao, Baizhao Ren, Yongshan Wan & Peng Liu. (2024) Deep phosphorus fertilizer placement increases maize productivity by improving root-shoot coordination and photosynthetic performance. Soil and Tillage Research 235, pages 105915.
Crossref
Adam D. Langworthy, Ross Corkrey, Richard P. Rawnsley & James L. Hills. (2023) Shoot nitrogen concentrations required for optimal herbage growth of multiple perennial ryegrass ( Lolium perenne L. ) cultivars relative to modern summer‐active cocksfoot ( Dactylis glomerata L. ) and tall fescue ( Festuca arundinacea Schreb. ) cultivars . Grass and Forage Science 78:4, pages 525-535.
Crossref
Xiaoyang Liu, Kunhui He, Farhan Ali, Dongdong Li, Hongguang Cai, Hongwei Zhang, Lixing Yuan, Wenxin Liu, Guohua Mi, Fanjun Chen & Qingchun Pan. (2023) Genetic dissection of N use efficiency using maize inbred lines and testcrosses. The Crop Journal 11:4, pages 1242-1250.
Crossref
Hongzhen Luo, Kevin Dewitte, Sofie Landschoot, Ivona Sigurnjak, Ana A. Robles-Aguilar, Evi Michels, Stefaan De Neve, Geert Haesaert & Erik Meers. (2022) Benefits of biobased fertilizers as substitutes for synthetic nitrogen fertilizers: Field assessment combining minirhizotron and UAV-based spectrum sensing technologies. Frontiers in Environmental Science 10.
Crossref
Peng Wu, Fu Liu, Junying Wang, Yihan Liu, Yuan Gao, Xuanqi Zhang, Guangzhou Chen, Fangyuan Huang, Shakeel Ahmad, Peng Zhang, Tie Cai & Zhikuan Jia. (2022) Suitable fertilization depth can improve the water productivity and maize yield by regulating development of the root system. Agricultural Water Management 271, pages 107784.
Crossref
Hongzhen Luo, Ana A. Robles-Aguilar, Ivona Sigurnjak, Evi Michels & Erik Meers. (2021) Assessing Nitrogen Availability in Biobased Fertilizers: Effect of Vegetation on Mineralization Patterns. Agriculture 11:9, pages 870.
Crossref
Zhi Huan Zhang, Ming Ming Li, Bi Li Cao, Zi Jing Chen & Kun Xu. (2021) Grafting improves tomato yield under low nitrogen conditions by enhancing nitrogen metabolism in plants. Protoplasma 258:5, pages 1077-1089.
Crossref
Yi Wang, Yanxiang Zhao, Shanshan Wang, Junfeng Liu, Xiqing Wang, Yanlai Han & Fang Liu. (2020) Up‐regulated 2‐alkenal reductase expression improves low‐nitrogen tolerance in maize by alleviating oxidative stress. Plant, Cell & Environment 44:2, pages 559-573.
Crossref
Xichao Sun, Huan Chen, Peng Wang, Fanjun Chen, Lixing Yuan & Guohua Mi. (2020) Low nitrogen induces root elongation via auxin-induced acid growth and auxin-regulated target of rapamycin (TOR) pathway in maize. Journal of Plant Physiology 254, pages 153281.
Crossref
Hao Qing Zhang, Xue Qiang Zhao, Yi Ling Chen, Jia Lin Wang & Ren Fang Shen. (2020) Improved Root Growth by Liming Aluminum-Sensitive Rice Cultivar or Cultivating an Aluminum-Tolerant One Does Not Enhance Fertilizer Nitrogen Recovery Efficiency in an Acid Paddy Soil. Plants 9:6, pages 765.
Crossref
Aziiba Emmanuel Asibi, Qiang Chai & Jeffrey A. Coulter. (2019) Mechanisms of Nitrogen Use in Maize. Agronomy 9:12, pages 775.
Crossref
Zhigang Liu, Yang Zhao, Song Guo, Shuai Cheng, Yanjie Guan, Hongguang Cai, Guohua Mi, Lixing Yuan & Fanjun Chen. (2019) Enhanced crown root number and length confers potential for yield improvement and fertilizer reduction in nitrogen-efficient maize cultivars. Field Crops Research 241, pages 107562.
Crossref
Wennan Su, Muhammad Kamran, Jun Xie, Xiangping Meng, Qingfang Han, Tiening Liu & Juan Han. (2019) Shoot and root traits of summer maize hybrid varieties with higher grain yields and higher nitrogen use efficiency at low nitrogen application rates. PeerJ 7, pages e7294.
Crossref
Yunlong Zhang, Tengteng Li, Shuikuan Bei, Junling Zhang & Xiaolin Li. (2018) Growth and Distribution of Maize Roots in Response to Nitrogen Accumulation in Soil Profiles after Long-Term Fertilization Management on a Calcareous Soil. Sustainability 10:11, pages 4315.
Crossref
Zhigang Liu, Kun Gao, Shengchen Shan, Riling Gu, Zhangkui Wang, Eric J. Craft, Guohua Mi, Lixing Yuan & Fanjun Chen. (2017) Comparative Analysis of Root Traits and the Associated QTLs for Maize Seedlings Grown in Paper Roll, Hydroponics and Vermiculite Culture System. Frontiers in Plant Science 8.
Crossref
Guozhong Feng, Yongjie Zhang, Yanling Chen, Qian Li, Fanjun Chen, Qiang Gao & Guohua Mi. (2016) Effects of Nitrogen Application on Root Length and Grain Yield of Rain‐Fed Maize under Different Soil Types. Agronomy Journal 108:4, pages 1656-1665.
Crossref
Jordon Pace, Candice Gardner, Cinta Romay, Baskar Ganapathysubramanian & Thomas Lübberstedt. (2015) Genome-wide association analysis of seedling root development in maize (Zea mays L.). BMC Genomics 16:1.
Crossref
Jienan Han, Lifeng Wang, Hongyan Zheng, Xiaoying Pan, Huiyong Li, Fanjun Chen & Xuexian Li. (2015) ZD958 is a low-nitrogen-efficient maize hybrid at the seedling stage among five maize and two teosinte lines. Planta 242:4, pages 935-949.
Crossref
Pengcheng Li, Fanjun Chen, Hongguang Cai, Jianchao Liu, Qingchun Pan, Zhigang Liu, Riliang Gu, Guohua Mi, Fusuo Zhang & Lixing Yuan. (2015) A genetic relationship between nitrogen use efficiency and seedling root traits in maize as revealed by QTL analysis. Journal of Experimental Botany 66:11, pages 3175-3188.
Crossref
Xiaohuan Mu, Fanjun Chen, Qiuping Wu, Qinwu Chen, Jingfeng Wang, Lixing Yuan & Guohua Mi. (2015) Genetic improvement of root growth increases maize yield via enhanced post-silking nitrogen uptake. European Journal of Agronomy 63, pages 55-61.
Crossref
Yi-kai ZHANG, Fan-jun CHEN, Xiao-chao CHEN, Li-zhi LONG, Kun GAO, Li-xing YUAN, Fu-suo ZHANG & Guo-hua MI. (2013) Genetic Improvement of Root Growth Contributes to Efficient Phosphorus Acquisition in maize (Zea mays L.). Journal of Integrative Agriculture 12:6, pages 1098-1111.
Crossref
Hongguang Cai, Qun Chu, Riliang Gu, Lixing Yuan, Jianchao Liu, Xiuzhi Zhang, Fanjun Chen, Guohua Mi & Fusuo Zhang. (2012) Identification of QTLs for plant height, ear height and grain yield in maize ( Zea mays L.) in response to nitrogen and phosphorus supply . Plant Breeding 131:4, pages 502-510.
Crossref
Hongguang Cai, Qun Chu, Lixing Yuan, Jianchao Liu, Xiaohui Chen, Fanjun Chen, Guohua Mi & Fusuo Zhang. (2011) Identification of quantitative trait loci for leaf area and chlorophyll content in maize (Zea mays) under low nitrogen and low phosphorus supply. Molecular Breeding 30:1, pages 251-266.
Crossref
Fusuo Zhang, Zhenling Cui, Xinping Chen, Xiaotang Ju, Jianbo Shen, Qing Chen, Xuejun Liu, Weifeng Zhang, Guohua Mi, Mingsheng Fan & Rongfeng Jiang. 2012. Advances in Agronomy Volume 116. Advances in Agronomy Volume 116 1 40 .
Agostino Sorgonà & Maria Rosa Abenavoli. 2012. Advances in Citrus Nutrition. Advances in Citrus Nutrition 231 244 .
Jianchao Liu, Hongguang Cai, Qun Chu, Xiaohui Chen, Fanjun Chen, Lixing Yuan, Guohua Mi & Fusuo Zhang. (2010) Genetic analysis of vertical root pulling resistance (VRPR) in maize using two genetic populations. Molecular Breeding 28:4, pages 463-474.
Crossref
A. J. Leffler, T. A. Monaco & J. J. James. (2011) Nitrogen acquisition by annual and perennial grass seedlings: testing the roles of performance and plasticity to explain plant invasion. Plant Ecology 212:10, pages 1601-1611.
Crossref
GuoHua Mi, FanJun Chen, QiuPing Wu, NingWei Lai, LiXing Yuan & FuSuo Zhang. (2010) Ideotype root architecture for efficient nitrogen acquisition by maize in intensive cropping systems. Science China Life Sciences 53:12, pages 1369-1373.
Crossref
Yunfeng Peng, Junfang Niu, Zhengping Peng, Fusuo Zhang & Chunjian Li. (2010) Shoot growth potential drives N uptake in maize plants and correlates with root growth in the soil. Field Crops Research 115:1, pages 85-93.
Crossref
Jinxin Liu, Fanjun Chen, Chunliang Olokhnuud, A. D. M. Glass, Yiping Tong, Fusuo Zhang & Guohua Mi. (2009) Root size and nitrogen‐uptake activity in two maize ( Zea mays ) inbred lines differing in nitrogen‐use efficiency . Journal of Plant Nutrition and Soil Science 172:2, pages 230-236.
Crossref
Jianchao Liu, Jiansheng Li, Fanjun Chen, Fusuo Zhang, Tianheng Ren, Zhongjuan Zhuang & Guohua Mi. (2008) Mapping QTLs for root traits under different nitrate levels at the seedling stage in maize (Zea mays L.). Plant and Soil 305:1-2, pages 253-265.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.