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The genus Phytophthora contains more than 100 plant pathogenic species that parasitize a wide range of plants, including economically important fruits, vegetables, cereals, and forest trees, causing significant losses. Global agriculture is seriously threatened by fungicide resistance in Phytophthora species, which makes it imperative to fully comprehend the mechanisms, frequency, and non-chemical management techniques related to resistance mutations. The mechanisms behind fungicide resistance, such as target-site mutations, efflux pump overexpression, overexpression of target genes and metabolic detoxification routes for fungicides routinely used against Phytophthora species, are thoroughly examined in this review. Additionally, it assesses the frequency of resistance mutations in various Phytophthora species and geographical areas, emphasizing the rise of strains that are resistant to multiple drugs. The effectiveness of non-chemical management techniques, including biological control, host resistance, integrated pest management plans, and cultural practices, in reducing fungicide resistance is also thoroughly evaluated. The study provides important insights for future research and the development of sustainable disease management strategies to counter fungicide resistance in Phytophthora species by synthesizing current information and identifying knowledge gaps.
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http://dx.doi.org/10.1007/s11274-024-04108-6 | DOI Listing |
Bioorg Med Chem
September 2025
Universidade Federal Fluminense, Instituto de Química, Niterói, RJ,CEP 24020-141, Brazil. Electronic address:
Invasive Candidiasis infections are a clinical challenge, with limited effective therapeutic agents and increasing resistance. The discovery of new antifungal agents is urgently required. Here, we developed a new series of 2-methyl-1,4-naphthoquinone (Menadione) Tethered to 1H-1,2,3-triazolyl-selenoester in good yields, which exhibit antifungal potential activity against Candida species.
View Article and Find Full Text PDFJ Agric Food Chem
September 2025
School of Science, Asymmetric Synthesis and Chirotechnology Key Laboratory of Sichuan Province, Xihua University, Chengdu 610039, P. R. China.
The emergence of severe resistance issues in plant pathogenic fungi poses a significant threat to the global quality and safety of crops. In this study, 36 novel derivatives featuring a 5,6,7,8-tetrahydroquinazolin structure were designed and synthesized for the first time. These 36 target compounds were subjected to tests against five fungal species.
View Article and Find Full Text PDFPhytopathology
September 2025
Guizhou University, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Huaxi District, Guiyang, Guizhou Province of China, Guiyang, China, 550025;
Osthole exhibits strong inhibitory activity against phytopathogenic fungi; however, its antifungal mechanism remains unclear. This study assessed osthole's inhibitory effects on several phytopathogenic fungi, revealing a half-maximal effective concentration of 70.03 μg/ml against the hyphal growth of .
View Article and Find Full Text PDFDan Med J
August 2025
Department of Dermatology, Zealand University Hospital, Roskilde.
Introduction: Tinea pedis is a common disease that affects up to 70% of adults during a lifetime. Most cases are caused by Trichophyton species. Worldwide, terbinafine resistance among dermatophytes is rising, which is concerning as terbinafine is the first-line treatment.
View Article and Find Full Text PDFPlant Dis
September 2025
USDA-ARS US Vegetable Laboratory, U.S. Vegetable Laboratory, 2700 Savanah Hwy, Charleston, South Carolina, United States, 29414;
Green fruit anthracnose caused by the fungus Colletotrichum scovillei is an emerging disease on various types of peppers (Capsicum spp.) in the eastern United States. Sixteen cultivars, representing 11 horticultural fruit types from four species of Capsicum, C.
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