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Research Project:
PATHOGEN POPULATION BIOLOGY AND GENOMICS, AND HOST RESISTANCE FOR FUSARIUM HEAD BLIGHT OF CEREALS
Location: Cereal Disease Laboratory
Publications
(Clicking on the reprint icon
will take you to the publication reprint.)
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Fusarium graminearum Tri12p influences virulence to wheat and trichothecene accumulation
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Interactions between Fusarium verticillioides, Ustilago maydis, and Zea mays: an endophyte, a pathogen, and their shared plant host
- (Peer Reviewed Journal)
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| Rodriguez Estrada, A.E., Jonkers, W., Kistler, H.C., May, G. 2012. Interactions between Fusarium verticillioides, Ustilago maydis, and Zea mays: an endophyte, a pathogen, and their shared plant host. Fungal Genetics and Biology. 49:578-587. |
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The Wor1-like protein Fgp1 regulates pathogenicity, toxin synthesis and reproduction in the phytopathogenic fungus Fusarium graminearum
- (Peer Reviewed Journal)
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| Jonkers, W., Dong, Y., Broz, K.L., Kistler, H.C. 2012. The Wor1-like protein Fgp1 regulates pathogenicity, toxin synthesis and reproduction in the phytopathogenic fungus Fusarium graminearum. PLoS Pathogens. 8(5):e1002724. |
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Functional analysis of the kinome of the wheat scab fungus Fusarium graminearum
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| Wang, C., Zhang, S., Hou, R., Zheng, Q., Zhao, Z., Xu, Q., Zheng, D., Wang, G., Liu, H., Zhou, X., Ma, J., Kistler, H.C., Kang, Z., Xu, J. 2012. Functional analysis of the kinome of the wheat scab fungus Fusarium graminearum. PLoS Pathogens. 7(12):e1002460. |
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In vitro interactions between Fusarium verticillioides and Ustilago maydis through real-time PCR and metabolic profiling
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| Rodriguez Estrada, A.E., Hegeman, A., Kistler, H.C., May, G. 2011. In vitro interactions between Fusarium verticillioides and Ustilago maydis through real-time PCR and metabolic profiling. Fungal Genetics and Biology. 48:874-885. |
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The transcriptome of Fusarium graminearum during the infection of wheat
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| Lysoe, E., Seong, K., Kistler, H.C. 2011. The transcriptome of Fusarium graminearum during the infection of wheat. Molecular Plant-Microbe Interactions. 24:995-1000. |
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Npc1 is involved in sterol trafficking in the filamentous fungus Fusarium graminearum
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| Breakspear, A., Pasquali, M., Broz, K.L., Dong, Y., Kistler, H.C. 2011. Npc1 is involved in sterol trafficking in the filamentous fungus Fusarium graminearum. Fungal Genetics Conference/Asilomar. 58(Supplement):186. |
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Npc1 is involved in sterol trafficking in the filamentous fungus Fusarium graminearum
- (Peer Reviewed Journal)
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| Breakspear, A., Pasquali, M., Broz, K.L., Dong, Y., Kistler, H.C. 2011. Npc1 is involved in sterol trafficking in the filamentous fungus Fusarium graminearum. Fungal Genetics and Biology. 48:725-730. |
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The HDF1 histone deacetylase gene is important for conidiation, sexual reproduction, and pathogenesis in Fusarium graminearum
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| Li, Y., Wang, C., Liu, W., Wang, G., Kang, Z., Kistler, H.C., Xu, J. 2011. The HDF1 histone deacetylase gene is important for conidiation, sexual reproduction, and pathogenesis in Fusarium graminearum. Molecular Plant-Microbe Interactions. 24:487-496. |
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The transcription factor FgStuAp influences spore development, pathogenicity, and secondary metabolism in Fusarium graminearum
- (Peer Reviewed Journal)
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| Lysoe, E., Pasquali, M., Breakspear, A., Kistler, H.C. 2011. The transcription factor FgStuAp influences spore development, pathogenicity, and secondary metabolism in Fusarium graminearum. Molecular Plant-Microbe Interactions. 24(1):54-67. |
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A novel transcriptional factor important for pathogenesis and ascosporogenesis in Fusarium graminearum
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| Wang, Y., Liu, W., Hou, Z., Wang, C., Zhou, X., Jonkers, W., Ding, S., Kistler, H.C., Xu, J. 2011. A novel transcriptional factor important for pathogenesis and ascosporogenesis in Fusarium graminearum. Molecular Plant-Microbe Interactions. 24(1):118-128. |
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Genomic Organization of Fungal Plant Pathogenicity
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| Rep, M., Kistler, H.C. 2010. Genomic Organization of Fungal Plant Pathogenicity. Current Opinion in Plant Biology. 13:420-426. |
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Durable resistance to oat crown rust: Can we get there from here?
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| Carson, M.L. 2010. Durable resistance to oat crown rust: Can we get there from here?. American Oat Workers Conference Proceedings. pp. 26-27. |
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Systematic discovery of regulatory motifs in Fusarium graminearum by comparing four Fusarium genomes
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| Kumar, L., Breakspear, A., Kistler, H.C., Ma, L., Xie, X. 2010. Systematic Discovery of Regulatory Motifs in Fusarium graminearum by Comparing Four Fusarium Genomes. Genome Biology. 11(208):1-13. |
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Comparative functional genomics of plant pathogenic Fusarium species
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| Kistler, H.C., Li-Jun, M., Jin-Rong, X. 2009. Comparative functional genomics of plant pathogenic Fusarium species. Meeting Abstract. p. 17. |
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The Transducin Beta Like Gene FTL1 is Essential for Pathogenesis in Fusarium graminearum
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| Ding, S., Mehrabi, R., Hou, Z., Seong, K., Kistler, H.C., Xu, J. 2009. The Transducin Beta Like Gene FTL1 is Essential for Pathogenesis in Fusarium graminearum. Eukaryotic Cell. 8:867-876. |
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Global Gene Regulation by Fusarium Transcription Factors Tri6 and Tri10 Reveals Adaptations for Toxin Biosynthesis
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| Seong, K., Pasquali, M., Zhou, X., Song, J., Hilburn, K.L., Mccormick, S.P., Dong, Y., Xu, J., Kistler, H.C. 2009. Global Gene Regulation by Fusarium Transcription Factors Tri6 and Tri10 Reveals Adaptations for Toxin Biosynthesis. Fungal Genetics Newsletter. 56:168. |
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Global Gene Regulation by Fusarium Transcription Factors Tri6 and Tri10 Reveals Adaptations for Toxin Biosynthesis
- (Peer Reviewed Journal)
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| Seong, K., Pasquali, M., Hilburn, K.L., Mccormick, S.P., Xu, J., Kistler, H.C. 2009. Global Gene Regulation by Fusarium Transcription Factors Tri6 and Tri10 Reveals Adaptations for Toxin Biosynthesis. Molecular Microbiology. 72:354-367. |
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Comparative Gene Expression Analysis of Fusarium graminearum in Triticum aestivum and Oryza sativa spp. japonica
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| Menke, J., Dong, Y., Kistler, H.C. 2008. Comparative Gene Expression Analysis of Fusarium graminearum in Triticum aestivum and Oryza sativa spp. japonica. National Fusarium Head Blight Forum Proceedings. 57. |
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The Transcription Factor FgStuA Influences Spore Development, Pathogenicity and Secondary Metabolism in the Plant Pathogenic Fungus Fusarium graminearum
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| Lysoe, E., Pasquali, M., Breakspear, A., Kistler, H.C. 2008. The Transcription Factor FgStuA Influences Spore Development, Pathogenicity and Secondary Metabolism in the Plant Pathogenic Fungus Fusarium graminearum. Mycological Society of America. 59(4):43. |
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The transcription factor FgStuAp influences spore development, pathogenicity, and secondary metabolism in Fusarium graminearum
- (Peer Reviewed Journal)
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| Lysoe, E., Pasquali, M., Klemsdahl, S., Kistler, H.C. 2008. The transcription factor FgStuAp influences spore development, pathogenicity, and secondary metabolism in Fusarium graminearum. Molecular Plant-Microbe Interactions. 90:S3.26-S3.27. |
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FUSARIUM COMPARATIVE GENOMICS REVEALS GENOME DYNAMICS AND ITS IMPACTS ON PATHOGENESIS
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| Ma, L., Shim, W., Woloshuk, C., Kang, S., Kistler, H.C. 2008. Fusarium Comparative Genomics Reveals Genome Dynamics and Its Impacts on Pathogenesis [abstract]. Journal of Phytopathology. 90:S3.11. |
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Gene Expression Profiling and Functional Analysis of Spore Germination in Fusarium graminearum
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| Pasquali, M., Seong, K., Dong, Y., Kistler, H.C. 2008. Gene Expression Profiling and Functional Analysis of Spore Germination in Fusarium graminearum. Journal of Phytopathology. 90:S3.27. |
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Transcriptome of Fusarium graminearum During Plant Infection and Toxin Biosynthesis
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| Pasquali, M., Lysoe, E., Seong, K., Xu, J., Kistler, H.C. 2008. Transcriptome of Fusarium graminearum During Plant Infection and Toxin Biosynthesis [abstract]. Phytopathology. 98:6.S122. |
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GLOBAL GENE EXPRESSION DURING PLANT INFECTION AND TOXIN BIOSYNTHESIS IN FUSARIUM GRAMINEARUM
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| Pasquali, M., Lysoe, E., Seong, K., Xu, J., Ma, L., Kistler, H.C. 2008. Global Gene Expression During Plant Infection and Toxin Biosynthesis in Fusarium graminearum [abstract]. Journal of Phytopathology. 90(3):S3.11-12. |
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Spore Development and Trichothecene Mutants of Fusarium graminearum
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| Pasquali, M., Seong, K., Menke, J., Lysoe, E., Hilburn, K.L., Xu, J., Kistler, H.C. 2007. Spore Development and Trichothecene Mutants of Fusarium graminearum [abstract]. Proceedings of the National Fusarium Head Blight Forum. p. 32. |
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Spore development and trichothecene mutants of Fusarium graminearum
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| Gale, L.R., Harrison, S.A., Milus, G.A., Ochocki, G.E., O Donnell, K., Ward, T.J., Kistler, H.C. 2007. Spore Development and Trichothecene Mutants of Fusarium graminearum [abstract]. Proceedings of the National Fusarium Head Blight Forum. p. 26. |
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FMK1 Regulates the Expression of 333 Genes in Fusarium graminearum
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| Ding, S., Shou, X., Kistler, H.C., Xu, J. 2007. FMK1 Regulates the Expression of 333 Genes in Fusarium graminearum [abstract]. National Fusarium Head Blight Forum Proceedings. p. 25. |
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CONIDIAL GERMINATION IN THE FILAMENTOUS FUNGUS FUSARIUM GRAMINEARUM
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| Seong, K., Xu, J., Zhao, X., Guldener, U., Kistler, H.C. 2008. Conidial Germination in the Filamentous Fungus Fusarium graminearum. Fungal Genetics and Biology. 45:389-399. |
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