High‐variance phenome database reveals important roles of WD40 proteins in the plant pathogenic fungus Fusarium graminearum

WD40 is a highly conserved protein domain in eukaryotes that functions as a versatile platform for protein-protein interactions and participates in diverse biological processes. We performed a genome-wide functional analysis of WD40 domain-containing proteins in Fusarium graminearum, a phytopathogenic fungus that causes severe yield losses and mycotoxin contamination in major cereal crops. Comprehensive phenotypic profiling of 119 WD40 gene deletion mutants across 22 phenotypic traits established a systematic WD40 phenome dataset, revealing the broad functional involvement of WD40 proteins and a strong correlation between sexual reproduction and virulence. Protein interaction analyses of selected WD40 proteins revealed diverse WD40-mediated interaction patterns and provided further insights into WD40-mediated protein interactions and their roles in protein complex formation. This study provides a foundation for further characterization of WD40 proteins in filamentous fungi.

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Publication Details

Journal
New Phytologist
Published
2026-08-31
DOI
https://doi.org/10.1111/nph.71547
Primary Topic
Fungal and yeast genetics research
Type
article
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article

High‐variance phenome database reveals important roles of WD40 proteins in the plant pathogenic fungus Fusarium graminearum

Heeji Moon, Soyoung Choi, Jiyoung Shin, Hosung Jeon et al.
New Phytologist
Fungal and yeast genetics research
article

High‐variance phenome database reveals important roles of WD40 proteins in the plant pathogenic fungus Fusarium graminearum

Heeji Moon, Soyoung Choi, Jiyoung Shin, Hosung Jeon, Hokyoung Son, Kyunghun Min, Dae‐Geun Song, Aram Hwangbo, Jiyeun Park, Yejin Choi, Gyeong Ja Choi, Jung‐Eun Kim, Sieun Kim, Hun Kim, Nahyun Lee, Yin‐Won Lee
article en

Abstract

WD40 is a highly conserved protein domain in eukaryotes that functions as a versatile platform for protein-protein interactions and participates in diverse biological processes. We performed a genome-wide functional analysis of WD40 domain-containing proteins in Fusarium graminearum, a phytopathogenic fungus that causes severe yield losses and mycotoxin contamination in major cereal crops. Comprehensive phenotypic profiling of 119 WD40 gene deletion mutants across 22 phenotypic traits established a systematic WD40 phenome dataset, revealing the broad functional involvement of WD40 proteins and a strong correlation between sexual reproduction and virulence. Protein interaction analyses of selected WD40 proteins revealed diverse WD40-mediated interaction patterns and provided further insights into WD40-mediated protein interactions and their roles in protein complex formation. This study provides a foundation for further characterization of WD40 proteins in filamentous fungi.

New Phytologist
Seoul National University (KR), Rural Development Administration (KR), National Horticultural Research Institute (NG), National Institute of Biological Resources (KR), Bio-Medical Science (South Korea) (KR), Korea Research Institute of Chemical Technology (KR), Korea Institute of Science and Technology (KR), Korea University of Science and Technology (KR), Pukyong National University (KR)
Zero hunger
Openalex Percentile: Top 18%
Fungal and yeast genetics research
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