Yunfei Hu

ORCID: 0009-0004-9799-7798
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About
Contact & Profiles
Research Areas
  • Plant Stress Responses and Tolerance
  • Plant Molecular Biology Research
  • Silicon Effects in Agriculture
  • Plant nutrient uptake and metabolism
  • Plant Physiology and Cultivation Studies
  • Photosynthetic Processes and Mechanisms
  • Soil Carbon and Nitrogen Dynamics
  • Mycorrhizal Fungi and Plant Interactions
  • Plant Pathogens and Fungal Diseases
  • Soil and Unsaturated Flow
  • Plant-Microbe Interactions and Immunity

Lanzhou University
2008-2025

Wageningen University & Research
2024

King Abdullah University of Science and Technology
2024

University of California, Davis
2024

Ithaca College
2024

Cornell University
2024

Soil salinity is one of the major threats to agricultural productivity worldwide. Salt stress exposure alters root and shoot growth rates, thereby affecting overall plant performance. While past studies have extensively documented effect salt on elongation development separately, here we take an innovative approach by examining coordination under conditions. Utilizing a newly developed tool for quantifying root:shoot ratio in agar-grown Arabidopsis seedlings, found that results loss between...

10.7554/elife.98896.3 preprint EN 2025-02-28

Soil salinity is one of the major threats to agricultural productivity worldwide. Salt stress exposure alters root and shoots growth rates, thereby affecting overall plant performance. While past studies have extensively documented effect salt on elongation shoot development separately, here we take an innovative approach by examining coordination under conditions. Utilizing a newly developed tool for quantifying root:shoot ratio in agar-grown Arabidopsis seedlings, found that results loss...

10.7554/elife.98896.4 article EN cc-by eLife 2025-03-28

Abstract Soil salinity is one of the major threats to agricultural productivity worldwide. Salt stress exposure alters root and shoot growth rates, thereby affecting overall plant performance. While past studies have extensively documented effect salt on elongation development separately, here we take an innovative approach by examining coordination under conditions. Utilizing a newly developed tool for quantifying root:shoot ratio in agar-grown Arabidopsis seedlings, found that results loss...

10.1101/2024.04.09.588564 preprint EN cc-by bioRxiv (Cold Spring Harbor Laboratory) 2024-04-11

Soil salinity is one of the major threats to agricultural productivity worldwide. Salt stress exposure alters root and shoots growth rates, thereby affecting overall plant performance. While past studies have extensively documented effect salt on elongation shoot development separately, here we take an innovative approach by examining coordination under conditions. Utilizing a newly developed tool for quantifying root:shoot ratio in agar-grown Arabidopsis seedlings, found that results loss...

10.7554/elife.98896 article EN cc-by eLife 2024-07-25

Soil salinity is one of the major threats to agricultural productivity worldwide. Salt stress exposure alters root and shoot growth rates, thereby affecting overall plant performance. While past studies have extensively documented effect salt on elongation development separately, here we take an innovative approach by examining coordination under conditions. Utilizing a newly developed tool for quantifying root:shoot ratio in agar-grown Arabidopsis seedlings, found that results loss between...

10.7554/elife.98896.2 preprint EN 2024-11-27

Soil salinity is one of the major threats to agricultural productivity worldwide. Salt stress exposure alters root and shoot growth rates, thereby affecting overall plant performance. While past studies have extensively documented effect salt on elongation development separately, here we take an innovative approach by examining coordination under conditions. Utilizing a newly developed tool for quantifying root:shoot ratio in agar-grown Arabidopsis seedlings, found that results loss between...

10.7554/elife.98896.1 preprint EN 2024-07-25
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