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160 related items for PubMed ID: 34854539
1. Fungicide resistance characterized across seven modes of action in Botrytis cinerea isolated from Australian vineyards. Harper LA, Paton S, Hall B, McKay S, Oliver RP, Lopez-Ruiz FJ. Pest Manag Sci; 2022 Apr; 78(4):1326-1340. PubMed ID: 34854539 [Abstract] [Full Text] [Related]
2. Independent Emergence of Resistance to Seven Chemical Classes of Fungicides in Botrytis cinerea. Fernández-Ortuño D, Grabke A, Li X, Schnabel G. Phytopathology; 2015 Apr; 105(4):424-32. PubMed ID: 25317841 [Abstract] [Full Text] [Related]
3. Fungicide Resistance Profiles of Botrytis cinerea Isolates From Michigan Vineyards and Development of a TaqMan Assay for Detection of Fenhexamid Resistance. Alzohairy SA, Gillett J, Saito S, Naegele RN, Xiao CL, Miles TD. Plant Dis; 2021 Feb; 105(2):285-294. PubMed ID: 32762329 [Abstract] [Full Text] [Related]
4. Identification and Characterization of Fungicide Resistance in Botrytis Populations from Small Fruit Fields in the Mid-Atlantic United States. Cosseboom SD, Hu M. Plant Dis; 2021 Mar 09. PubMed ID: 33719541 [Abstract] [Full Text] [Related]
6. Fungicide-Resistant Botrytis in Forest Nurseries May Impact Disease Control in Norway Spruce. Nielsen KAG, Skårn MN, Talgø V, Pettersson M, Fløistad IS, Strømeng GM, Brurberg MB, Stensvand A. Plant Dis; 2024 Jan 09; 108(1):139-148. PubMed ID: 37578357 [Abstract] [Full Text] [Related]
7. Comparison of the Biological Characteristics and Molecular Mechanisms of Fludioxonil-Resistant Isolates of Botrytis cinerea from Tomato in Liaoning Province of China. Chen L, Sun B, Zhao Y, Xiang P, Miao Z. Plant Dis; 2022 Jul 09; 106(7):1959-1970. PubMed ID: 35678566 [Abstract] [Full Text] [Related]
8. Fitness and competitive ability of Botrytis cinerea field isolates with dual resistance to SDHI and QoI fungicides, associated with several sdhB and the cytb G143A mutations. Veloukas T, Kalogeropoulou P, Markoglou AN, Karaoglanidis GS. Phytopathology; 2014 Apr 09; 104(4):347-56. PubMed ID: 24168041 [Abstract] [Full Text] [Related]
9. Combination of Suspension Array and Mycelial Growth Assay for Detecting Multiple-Fungicide Resistance in Botrytis cinerea in Hebei Province in China. Su Z, Zhang X, Zhao J, Wang W, Shang L, Ma S, Adzavon YM, Lu F, Weng M, Han X, Yang L, Zhao Q, Zhao P, Xie F, Ma X. Plant Dis; 2019 Jun 09; 103(6):1213-1219. PubMed ID: 30964418 [Abstract] [Full Text] [Related]
10. atrB-Associated Fludioxonil Resistance in Botrytis fragariae Not Linked to Mutations in Transcription Factor mrr1. Hu MJ, Cosseboom S, Schnabel G. Phytopathology; 2019 May 09; 109(5):839-846. PubMed ID: 30543488 [Abstract] [Full Text] [Related]
19. Sensitivity of Botrytis cinerea From Nectarine/Cherry in China to Six Fungicides and Characterization of Resistant Isolates. Yin WX, Adnan M, Shang Y, Lin Y, Luo CX. Plant Dis; 2018 Dec 09; 102(12):2578-2585. PubMed ID: 30299208 [Abstract] [Full Text] [Related]
20. Characterization of Postharvest Fungicide-Resistant Botrytis cinerea Isolates From Commercially Stored Apple Fruit. Jurick WM, Macarisin O, Gaskins VL, Park E, Yu J, Janisiewicz W, Peter KA. Phytopathology; 2017 Mar 09; 107(3):362-368. PubMed ID: 27841961 [Abstract] [Full Text] [Related] Page: [Next] [New Search]