ArticleBMC plant biology2021
TMT-based quantitative proteomic analysis reveals defense mechanism of wheat against the crown rot pathogen Fusarium pseudograminearum.
Article in BMC plant biology, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 13 papers.
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Who cites it
13 citing papers in PubMed, 24 citations in OpenAlex.
- Genetic Architecture and Molecular Mechanisms of Fusarium Crown Rot Resistance in Wheat.Plant, cell & environment · 2026Review
- Comparative Proteomic Analysis Reveals That TaCAD-A1 Enhances Resistance of Wheat to Powdery Mildew (Life (Basel, Switzerland) · 2026Article
- Comparative proteomics analysis of wild and cultivated accessions reveals key candidate proteins associated with seed weight variations in peanut.BMC plant biology · 2026Article
- Decoding Plant Immunity: Proteomics as a Biotechnological Tool for Crop Improvement.Advances in experimental medicine and biology · 2026Review
- Review
- Crown rot in wheat: pathogen biology, host responses, and management strategies.Stress biology · 2025Review
- TaHSP18.6 and TaSRT1 interact to confer resistance toProceedings of the National Academy of Sciences of the United States of America · 2025Article
- Wheat Omics: Advancements and Opportunities.Plants (Basel, Switzerland) · 2023Review
- Glutathione S-transferase interactions enhance wheat resistance to powdery mildew but not wheat stripe rust.Plant physiology · 2022Article
- Functional Identification ofBiomolecules · 2022Article
- Article
- Differential Protein Expression Analysis of Two Sugarcane Varieties in Response to Diazotrophic Plant Growth-Promoting EndophyteFrontiers in plant science · 2021Article
- Genetics of Resistance to Common Root Rot (Spot Blotch),Frontiers in genetics · 2021Review
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Authors and funding
9 authors at 2 institutions in 1 country.
Funding
Abstract
backgroundFusarium crown rot is major disease in wheat. However, the wheat defense mechanisms against this disease remain poorly understood.
resultsUsing tandem mass tag (TMT) quantitative proteomics, we evaluated a disease-susceptible (UC1110) and a disease-tolerant (PI610750) wheat cultivar inoculated with Fusarium pseudograminearum WZ-8A. The morphological and physiological results showed that the average root diameter and malondialdehyde content in the roots of PI610750 decreased 3 days post-inoculation (dpi), while the average number of root tips increased. Root vigor was significantly increased in both cultivars, indicating that the morphological, physiological, and biochemical responses of the roots to disease differed between the two cultivars. TMT analysis showed that 366 differentially expressed proteins (DEPs) were identified by Gene Ontology and Kyoto Encyclopedia of Genes and Genomes enrichment in the two comparison groups, UC1110_3dpi/UC1110_0dpi (163) and PI610750_3dpi/PI610750_0dpi (203). It may be concluded that phenylpropanoid biosynthesis (8), secondary metabolite biosynthesis (12), linolenic acid metabolites (5), glutathione metabolism (8), plant hormone signal transduction (3), MAPK signaling pathway-plant (4), and photosynthesis (12) contributed to the defense mechanisms in wheat. Protein-protein interaction network analysis showed that the DEPs interacted in both sugar metabolism and photosynthesis pathways. Sixteen genes were validated by real-time quantitative polymerase chain reaction and were found to be consistent with the proteomics data.
conclusionThe results provided insight into the molecular mechanisms of the interaction between wheat and F. pseudograminearum.
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