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Applied and Environmental Microbiology|May 19, 2025
Comparative genomics-based insights into <i>Pantoea ananatis</i> strains, isolated from white spot diseased leaves of maize with plant growth-promoting attributesFenghuan Yang, Miao Li, Hanxiang Wu, et al.Annual Review of Phytopathology|June 7, 2014
Novel insights into rice innate immunity against bacterial and fungal pathogensWende Liu, Jinling Liu, Lindsay Triplett, et al.International Journal of Biological Macromolecules|March 22, 2025
Characterization of Candida albicans myosin-1 motor function and its regulation by phosphorylation at TEDS siteXiao-Xiao Zhu, Qin Tian, Ning Zhang, et al.Molecular Plant Pathology|May 8, 2022
Two Magnaporthe appressoria-specific (MAS) proteins, MoMas3 and MoMas5, are required for suppressing host innate immunity and promoting biotrophic growth in rice cellsZiwen Gong, Na Ning, Zhiqiang Li, et al.Molecular Plant-Microbe Interactions : MPMI|June 18, 2021
Genomic Sequence Resource of <i>Kabatiella zeae</i>, the Causative Pathogen of Corn Eyespot DiseaseYafei Wang, Jinai Yao, Xinyao Xia, et al.Molecular Plant-Microbe Interactions : MPMI|March 1, 2021
Genome Sequence of <i>Rhizoctonia solani</i> Anastomosis Group 4 Strain Rhs4ca, a Widespread Pathomycete in Field CropsZhengkun Zhang, Xinyao Xia, Qian Du, et al.Plos Pathogens|February 25, 2020
Quantitative proteomics analysis reveals important roles of N-glycosylation on ER quality control system for development and pathogenesis in Magnaporthe oryzaeXiao-Lin Chen, Caiyun Liu, Bozeng Tang, et al.Eukaryotic Cell|October 16, 2007
A Rho3 homolog is essential for appressorium development and pathogenicity of Magnaporthe griseaWu Zheng, Jisheng Chen, Wende Liu, et al.Molecular Plant-Microbe Interactions : MPMI|March 26, 2021
Genome Sequence Resource for <i>Nigrospora oryzae</i>, an Important Pathogenic Fungus Threatening Crop ProductionYafei Wang, Jinai Yao, Zhiqiang Li, et al.The New Phytologist|August 20, 2023
Effector secretion and stability in the maize anthracnose pathogen Colletotrichum graminicola requires N-linked protein glycosylation and the ER chaperone pathwayJie Mei, Zhiqiang Li, Shaoqun Zhou, et al.Pageof 12