World's Best Scientists 2026 revealed!

D-Index & Metrics

Plant Science and Agronomy

D-Index
30
Citations
3426
World Ranking
6419
National Ranking
648

Best Publications

  • Nitrogen fertilizer rate affects root exudation, the rhizosphere microbiome and nitrogen-use-efficiency of maize

    Shusheng Zhu;Jorge M. Vivanco;Daniel K. Manter

  • Dual domestications and origin of traits in grapevine evolution

    Unknown

  • Crop diversity for yield increase.

    Chengyun Li;Xiahong He;Shusheng Zhu;Huiping Zhou

  • Whole-genome resequencing of 472 Vitis accessions for grapevine diversity and demographic history analyses

    Zhenchang Liang;Shengchang Duan;Jun Sheng;Shusheng Zhu

  • Autotoxic ginsenosides in the rhizosphere contribute to the replant failure of Panax notoginseng.

    Unknown

  • Fertilizer N application rate impacts plant-soil feedback in a sanqi production system

    Unknown

  • Plant-plant-microbe mechanisms involved in soil-borne disease suppression on a maize and pepper intercropping system.

    Min Yang;Yu Zhang;Lei Qi;Xinyue Mei

  • Negative Plant-Soil Feedback Driven by Re-assemblage of the Rhizosphere Microbiome With the Growth of Panax notoginseng.

    Unknown

  • Biochar Application Alleviated Negative Plant-Soil Feedback by Modifying Soil Microbiome.

    Unknown

  • Ginsenosides in root exudates of Panax notoginseng drive the change of soil microbiota through carbon source different utilization

    Unknown

  • Phenolic Acids Released in Maize Rhizosphere During Maize-Soybean Intercropping Inhibit Phytophthora Blight of Soybean.

    Unknown

  • Appropriate nitrogen application enhances saponin synthesis and growth mediated by optimizing root nutrient uptake ability

    Unknown

  • Steaming combined with biochar application eliminates negative plant-soil feedback for sanqi cultivation

    Unknown

  • Foliar Pathogen Infection Manipulates Soil Health through Root Exudate-Modified Rhizosphere Microbiome

    Unknown

  • Panax notoginseng Root Cell Death Caused by the Autotoxic Ginsenoside Rg1 Is Due to Over-Accumulation of ROS, as Revealed by Transcriptomic and Cellular Approaches.

    Unknown

  • The Phytophthora cactorum genome provides insights into the adaptation to host defense compounds and fungicides.

    Unknown

  • Protecting grapevines from rainfall in rainy conditions reduces disease severity and enhances profitability

    Unknown

  • Tobacco Rotated with Rapeseed for Soil-Borne Phytophthora Pathogen Biocontrol: Mediated by Rapeseed Root Exudates

    Unknown

  • Molecular Mechanisms Underlying Microbial Disease Control in Intercropping

    Unknown

  • Priming maize resistance by its neighbors: activating 1,4-benzoxazine-3-ones synthesis and defense gene expression to alleviate leaf disease.

    Unknown

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below: