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Rapidly Evolving Genes Are Key Players in Host specialization and virulence of the fungal wheat pathogen Zymoseptoria tritici (Mycosphaerella graminicola). PLoS Pathogens 82.
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5 (7), pp. 1323 - 1333 (2015)
RNA-seq-Based gene annotation and comparative genomics of four fungal grass pathogens in the genus Zymoseptoria identify novel orphan genes and species-specific invasions of transposable elements. G3: Genes, Genomes, Genetics 83.
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26, pp. 51 - 56 (2015)
Chromatin-based control of effector gene expression in plant-associated fungi. Current Opinion in Plant Biology 84.
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The APSES transcription factor LmStuA is required for sporulation, pathogenic development and effector gene expression in Leptosphaeria maculans. Molecular Plant Pathology, 12249 (2015)
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79, YFGBI 2798, pp. 63 - 70 (2015)
Chromatin analyses of Zymoseptoria tritici: methods for chromatin immunoprecipitation followed by high-throughput sequencing (ChIP-seq). Fungal Genetics and Biology Book (1)
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The fungal kingdom. ASM Press, Washington DC, USA (2018)
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87.
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1, pp. 142 - 155 (Eds. Zaragoza, Ó.; Casadevall, A.). Elsevier (2021)
Transposable elements in fungi: coevolution with the host genome shapes, genome architecture, plasticity and adaptation. In: Encyclopedia of Mycology, Vol. 88.
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Origin, function, and transmission of accessory chromosomes. In: Genetics and Biotechnology, 3 Ed., pp. 25 - 47 (Eds. Benz, J. P.; Schipper, K.). Springer International Publishing, Cham (2020)
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Molecular interactions of microbes and the plant phyllosphere. In: Cellular Dialogues in the Holobiont, 1st Edition Ed., pp. 267 - 285 (Eds. Bosch, T. C. G.; Hadfield, M. G.). CRC Press, Boca Raton (2020)
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2090, pp. 337 - 355 (Ed. Dutheil, J. Y.). Humana, New York (2020)
Population genomics of fungal plant pathogens and the analyses of rapidly evolving genome compartments. In: Statistical Population Genomics, Vol. Conference Report (5)
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34 (7S), p. S1.9 - S1.9 (2021)
Identification of novel immune-suppressing effectors from the wheat pathogen Zymoseptoria tritici. IS-MPMI Congress: eSymposia: Molecular Mechanism & Structure—Zooming in on Plant Immunity, online, July 12, 2021 - July 13, 2021. MPMI 92.
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32 (Supplement S), 10 Ed., p. 183 - 183 (2019)
Comparative analyses of compatible and incompatible host-pathogen interactions provide insight into host specialization of closely related pathogens. 18th Congress of International-Society-for-Molecular-Plant-Microbe-Interactions (IS-MPMI), Glasgow, Scotland, July 14, 2019 - July 18, 2019. Molecular Plant-Microbe Interactions 93.
Conference Report
32 (Supplement S), 10 Ed., p. 51 - 51 (2019)
Systemic acquired susceptibility caused by the fungal wheat pathogen Zymoseptoria tritici. 18th Congress of International-Society-for-Molecular-Plant-Microbe-Interactions (IS-MPMI), Glasgow, Scotland, July 14, 2019 - July 18, 2019. Molecular Plant-Microbe Interactions 94.
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108 (10), Supplement S1 Ed., pp. 104 - 105 (2018)
Genome architecture and virulence gene dynamics in oat crown rust populations. International Congress of Plant Pathology (ICPP), Boston, July 29, 2018 - August 03, 2018. Phytopathology 95.
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108 (10), Supplement S1 Ed., pp. 282 - 283 (2018)
Zymoseptoria tritici histone modifications distinguish core and accessory chromosomes and play an important role in genome stability. International Congress of Plant Pathology (ICPP), Boston, July 29, 2018 - August 03, 2018. Phytopathology Thesis - PhD (7)
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Population and evolutionary genomics of two economically important fungal plant pathogens. Dissertation, V, 218 pp., Christian-Albrechts-Universität, Kiel (2024)
97.
Thesis - PhD
Functional dissection of the meiotic drive of female-inherited accessory chromosomes in Zymoseptoria tritici. Dissertation, 126 pp., Christian-Albrechts-Universität, Kiel (2023)
98.
Thesis - PhD
Evolutionary and molecular basis of host adaptation in fungal plant pathogens: insights from Zymoseptoria pathosystems. Dissertation, 258 pp., Christian-Albrechts-Universität, Kiel (2022)
99.
Thesis - PhD
Population genomics of Cercospora beticola. Dissertation, 221 pp., Christian-Albrechts-Universität, Kiel (2021)
100.
Thesis - PhD
Domestication-driven metaorganism evolution in wheat. Dissertation, 225 pp., Christian-Albrechts-Universität, Kiel (2020)