Encyclopedia of Life Sciences 2018
DOI: 10.1002/9780470015902.a0027948
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Zymoseptoria Tritici

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Cited by 4 publications
(4 citation statements)
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“…Fungusun eşeyli dönemi henüz rapor edilmemiştir [32]. Zymoseptoria tritici veya Dothistroma septosporum gibi yakından ilişkili diğer funguslardan farklı olarak, R. collo-cygni, endofitik fungusların çeşitli özelliklerini de göstermektedir [33,34].…”
Section: Ramularia Yaprak Lekesi Hastalığına Neden Olan Patojen Fungu...unclassified
“…Fungusun eşeyli dönemi henüz rapor edilmemiştir [32]. Zymoseptoria tritici veya Dothistroma septosporum gibi yakından ilişkili diğer funguslardan farklı olarak, R. collo-cygni, endofitik fungusların çeşitli özelliklerini de göstermektedir [33,34].…”
Section: Ramularia Yaprak Lekesi Hastalığına Neden Olan Patojen Fungu...unclassified
“…Populations of Z. tritici are very large and have extremely high genetic variability because of sexual recombination. This recombination facilitates the emergence of resistance to fungicides and to major resistance genes, leading to an erosion of their efficiency 7–9 …”
Section: Introductionmentioning
confidence: 99%
“…This recombination facilitates the emergence of resistance to fungicides and to major resistance genes, leading to an erosion of their efficiency. [7][8][9] The use of bioregulation agents has been successful in several crop-pest systems 10 and could be an alternative to conventional control methods. Microbial antagonist agents such as fungi and bacteria are prime candidates against fungal plant pathogens 11 including against Z. tritici during its epidemic phase, that is, during the growing season when the disease significantly affects plant growth.…”
Section: Introductionmentioning
confidence: 99%
“…Several Dothideomycetes affect crops used as staple food around the world. To list only a few, Zymoseptoria tritici (teleomorph Mycosphaerella graminicola) and Dreschlera tritici-repentis (teleomorph Pyrenophora tritici-repentis), the causative agents of Septoria tritici blotch and tan spot, respectively, are major pathogens of wheat worldwide [20,21], and black Sigatoka disease caused by Pseudocercospora fijiensis (teleomorph Mycosphaerella fijiensis) remains a threat to banana production in many countries [22,23]. Given that all climate change models forecast an increase in abiotic stress to crops around the world and that these stresses have an impact on plant-pathogen interactions, it is important to understand how abiotic stresses can affect disease prevalence and severity.…”
Section: Introductionmentioning
confidence: 99%