World's Best Scientists 2026 revealed!

D-Index & Metrics

Plant Science and Agronomy

D-Index
58
Citations
10681
World Ranking
1373
National Ranking
124

Overview

What is he best known for?

The fields of study he is best known for:

  • Gene
  • Botany
  • Agronomy

His primary scientific interests are in Agronomy, Lateral root, Shoot, Cultivar and Rhizosphere. His Agronomy research integrates issues from Quantitative trait locus and Plant nutrition. His work is dedicated to discovering how Lateral root, Seedling are connected with Zea mays, Locus, Heritability and Root system architecture and other disciplines.

Botany covers Guohua Mi research in Shoot. The concepts of his Botany study are interwoven with issues in Plant hormone and Auxin. His Cultivar research includes elements of Plant physiology, Protein content, Hybrid and Plant breeding.

His most cited work include:

  • Pursuing sustainable productivity with millions of smallholder farmers. (244 citations)
  • Closing yield gaps in China by empowering smallholder farmers (177 citations)
  • Inhibition of maize root growth by high nitrate supply is correlated with reduced IAA levels in roots (163 citations)

What are the main themes of his work throughout his whole career to date?

Agronomy, Cultivar, Shoot, Hybrid and Horticulture are his primary areas of study. Guohua Mi combines subjects such as Quantitative trait locus and Inbred strain with his study of Agronomy. His study on Cultivar also encompasses disciplines like

  • Field experiment which connect with Yield,
  • Fertilizer together with Bacteria, Nutrient management and Rhizosphere.

Guohua Mi interconnects Gibberellin, Dry weight, Lateral root and Topsoil in the investigation of issues within Shoot. His Hybrid study also includes fields such as

  • Grain yield and related Low nitrogen,
  • Crop yield together with Plant nutrition. His study in Horticulture is interdisciplinary in nature, drawing from both Photosynthesis, Plant physiology and Sucrose.

He most often published in these fields:

  • Agronomy (57.58%)
  • Cultivar (18.18%)
  • Shoot (18.18%)

What were the highlights of his more recent work (between 2018-2021)?

  • Agronomy (57.58%)
  • Sowing (7.07%)
  • Horticulture (17.17%)

In recent papers he was focusing on the following fields of study:

His main research concerns Agronomy, Sowing, Horticulture, Cultivar and Shoot. Many of his studies involve connections with topics such as Nitrogen fixation and Agronomy. His research investigates the link between Horticulture and topics such as Fertilizer that cross with problems in Bacteria.

The Cultivar study combines topics in areas such as Grain yield, Hybrid and Animal science. His research integrates issues of Biomass and Plant physiology in his study of Hybrid. The study incorporates disciplines such as Transcription factor, Gene, Mutant, Cytokinin and Crown in addition to Shoot.

Between 2018 and 2021, his most popular works were:

  • Effect of different drip fertigation methods on maize yield, nutrient and water productivity in two-soils in Northeast China (18 citations)
  • ZmRAP2.7, an AP2 Transcription Factor, Is Involved in Maize Brace Roots Development. (9 citations)
  • Increased biomass accumulation in maize grown in mixed nitrogen supply is mediated by auxin synthesis. (9 citations)

In his most recent research, the most cited papers focused on:

  • Gene
  • Botany
  • Agronomy

His primary areas of study are Fertilizer, Shoot, Crown, Horticulture and Yield. Fertilizer is a subfield of Agronomy that Guohua Mi tackles. His Shoot study deals with the bigger picture of Botany.

Guohua Mi studied Botany and Mutant that intersect with Cell biology. Many of his research projects under Horticulture are closely connected to Mathematics, Competition and Coefficient of variation with Mathematics, Competition and Coefficient of variation, tying the diverse disciplines of science together. Yield is intertwined with Biomass and Sowing in his research.

Best Publications

  • Pursuing sustainable productivity with millions of smallholder farmers.

    Zhenling Cui;Hongyan Zhang;Xinping Chen;Chaochun Zhang

  • Closing yield gaps in China by empowering smallholder farmers

    Weifeng Zhang;Guoxin Cao;Xiaolin Li;Hongyan Zhang

  • Integrated Nutrient Management for Food Security and Environmental Quality in China

    Fusuo Zhang;Zhenling Cui;Xinping Chen;Xiaotang Ju

  • Maximizing root/rhizosphere efficiency to improve crop productivity and nutrient use efficiency in intensive agriculture of China

    Jianbo Shen;Chunjian Li;Guohua Mi;Long Li

  • Inhibition of maize root growth by high nitrate supply is correlated with reduced IAA levels in roots

    Qiuying Tian;Fanjun Chen;Jinxin Liu;Fusuo Zhang

  • Rhizosphere effect and root growth of two maize (Zea mays L.) genotypes with contrasting P efficiency at low P availability

    Yan Liu;Guohua Mi;Fanjun Chen;Jianhua Zhang

  • Modern maize hybrids in Northeast China exhibit increased yield potential and resource use efficiency despite adverse climate change

    Xiaochao Chen;Fanjun Chen;Yanling Chen;Qiang Gao

  • Genetic Analysis of Maize Root Characteristics in Response to Low Nitrogen Stress

    Liang Chun;Guohua Mi;Jiansheng Li;Fanjun Chen

  • Ideotype root architecture for efficient nitrogen acquisition by maize in intensive cropping systems.

    GuoHua Mi;FanJun Chen;QiuPing Wu;NingWei Lai

  • Within-Leaf Nitrogen Allocation in Adaptation to Low Nitrogen Supply in Maize during Grain-Filling Stage

    Xiaohuan Mu;Qinwu Chen;Fanjun Chen;Lixing Yuan

  • Effects of nitrogen application rate on grain yield and grain nitrogen concentration in two maize hybrids with contrasting nitrogen remobilization efficiency

    Yanling Chen;Changxin Xiao;Dali Wu;Tingting Xia

  • A genetic relationship between nitrogen use efficiency and seedling root traits in maize as revealed by QTL analysis

    Pengcheng Li;Fanjun Chen;Hongguang Cai;Jianchao Liu

  • Transforming agriculture in China: From solely high yield to both high yield and high resource use efficiency

    Jianbo Shen;Zhenling Cui;Yuxin Miao;Guohua Mi

  • A comprehensive analysis of root morphological changes and nitrogen allocation in maize in response to low nitrogen stress.

    Kun Gao;Fanjun Chen;Lixing Yuan;Fusuo Zhang

  • Characterization of the plant traits contributed to high grain yield and high grain nitrogen concentration in maize

    Yanling Chen;Changxin Xiao;Xiaochao Chen;Qian Li

  • Response of root morphology to nitrate supply and its contribution to nitrogen accumulation in maize

    Yan Wang;Guohua Mi;Fanjun Chen;Jianhua Zhang

  • Genome-wide dissection of changes in maize root system architecture during modern breeding

    Unknown

  • Ammonium inhibits primary root growth by reducing the length of meristem and elongation zone and decreasing elemental expansion rate in the root apex in Arabidopsis thaliana.

    Ying Liu;Ningwei Lai;Kun Gao;Fanjun Chen

  • Mapping QTLs for root traits under different nitrate levels at the seedling stage in maize ( Zea mays L.)

    Jianchao Liu;Jiansheng Li;Fanjun Chen;Fusuo Zhang

  • The physiological mechanism underlying root elongation in response to nitrogen deficiency in crop plants.

    Xichao Sun;Fanjun Chen;Lixing Yuan;Guohua Mi

  • Mapping QTLs for root system architecture of maize (Zea mays L.) in the field at different developmental stages.

    Hongguang Cai;Fanjun Chen;Guohua Mi;Fusuo Zhang

  • Active Optical Sensing of Spring Maize for In-Season Diagnosis of Nitrogen Status Based on Nitrogen Nutrition Index

    Tingting Xia;Yuxin Miao;Dali Wu;Hui Shao

Frequent Co-Authors

Fanjun Chen
Fanjun Chen China Agricultural University
Lixing Yuan
Lixing Yuan China Agricultural University
Fusuo Zhang
Fusuo Zhang China Agricultural University
Yuxin Miao
Yuxin Miao University of Minnesota
Zhenling Cui
Zhenling Cui China Agricultural University
Rongfeng Jiang
Rongfeng Jiang China Agricultural University
Jianbo Shen
Jianbo Shen China Agricultural University
Qiang Gao
Qiang Gao Beihang University
Xinping Chen
Xinping Chen Southwest University
Jianhua Zhang
Jianhua Zhang Hong Kong Baptist University

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