Results 121 to 130 of about 1,136 (163)
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Fluorescent AFLP fingerprinting of Monilinia fructicola
Journal of Plant Diseases and Protection, 2010The fluorescent amplified fragment length polymorphism method (AFLP) has been successfully applied to one of the brown rot fungi species — Monilinia fructicola, which causes severe losses in stone fruit production. This is the first report on the use of AFLP methodology for studying genetic variability among different M. fructicola isolates. A total of
T. Gril, F. Celar, B. Javornik, J. Jakse
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Resistance of Monilinia fructicola to thiophanate-methyl in Croatia
European Journal of Plant Pathology, 2020Croatian isolates of Monilinia fructicola, M. laxa and M. fructigena have been collected from peach, nectarine, sweet cherry, plum and apricot fruits and assessed for their sensitivity to thiophanate-methyl. Out of 66 isolates collected, 34 were identified as M. fructicola (52%), 22 as M. fructigena (33%) and 10 as M. laxa (15%). Mycelial radial growth
Ivić, Dario +6 more
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Use of silver nanoparticles to counter fungicide-resistance in Monilinia fructicola
Science of The Total Environment, 2020The potential of Ag-NPs to suppress Monilia fructicola isolates and to broaden the effectiveness of fungicides to overcome resistance was tested in vitro and in vivo. Twenty-three M. fructicola isolates were subjected to fungitoxicity screening with a number of fungicides in vitro, which resulted in the detection of 18 isolates resistant to ...
Anastasios A. Malandrakis +2 more
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Monilinia fructicola . [Distribution map].
Distribution Maps of Plant Diseases, 2006Abstract A new distribution map is provided for Monilinia fructicola (Winter) Honey. Leotiomycetes: Heliotiales: Sclerotiniaceae. Hosts: manly Rosaceous stone fruits. Information is given on the geographical distribution in Europe (Austria, Croatia, France, Mainland France, Germany, Greece, Hungary, Italy,
null CABI, null EPPO
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Monilinia fructicola, Monilinia laxa (Monilinia Rot, Brown Rot)
2014The importance of brown rot caused by Monilinia spp. in stone fruits is evident worldwide, as are the difficulties for controlling the disease development (www.monilinia.org). Although the infections occur in the field, fruit losses are prevalent in the postharvest phase and the control means, proposed until now, are insufficient in different ways ...
MARTINI, CAMILLA, MARI, MARTA
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Field occurrence of vinclozolin resistance in Monilinia fructicola
Plant Pathology, 1985Strains of Monilinia fructicola resistant to vinclozolin were isolated from fruit affected by brown rot from an orchard where the fungicide had been used over four seasons. Resistant isolates were pathogenic to peach fruit, and resistance of one isolate was confirmed following dipping of ...
L. J. PENROSE +2 more
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The antifungal activity of pterocarpans towards Monilinia fructicola
Phytochemistry, 1969Abstract The antifungal activity towards Monilinia fructicola of some naturally occurring pterocarpans and a number of related compounds obtained by substitution, degradation and partial synthesis has been examined. Compounds that were effective as antifungal agents had ED 50 values around 2 × 10 −5 M.
Dawn R. Perrin, I.A.M. Cruickshank
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EPPO Bulletin, 2013
During 2012, an official survey was conducted for Monilinia species present on peach and nectarine in Croatia. In total, 169 Monilinia spp. isolates were collected from 24 commercial orchards and identified according to morphology in culture and PCR. Eighty of the isolates were identified as Monilinia laxa, 70 as M. fructigena and 19 as M.
Ivić, Dario +3 more
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During 2012, an official survey was conducted for Monilinia species present on peach and nectarine in Croatia. In total, 169 Monilinia spp. isolates were collected from 24 commercial orchards and identified according to morphology in culture and PCR. Eighty of the isolates were identified as Monilinia laxa, 70 as M. fructigena and 19 as M.
Ivić, Dario +3 more
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CHARACTERIZATION OF THIOPHANATE METHYL RESISTANCE IN ITALIAN MONILINIA FRUCTICOLA ISOLATES
Journal of Plant Pathology, 2016Monilinia fructicola causes considerable damage to cultivated stone fruits in the temperate regions with an important economic impact. Monitoring the strains resistant to fungicides is essential to reduce economic losses associated with the peach and nectarine market.
MARTINI, CAMILLA +4 more
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Food Microbiology, 2017
The antagonistic effects of Debaryomyces hansenii KI2a, D. hansenii MI1a and Wickerhamomyces anomalus BS91 were tested against Monilinia fructigena and Monilinia fructicola in in vitro and in vivo trials. All yeast strains demonstrated antifungal activity at different levels depending on species, strain and pathogen. D hansenii KI2a and W.
Grzegorczyk M. +3 more
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The antagonistic effects of Debaryomyces hansenii KI2a, D. hansenii MI1a and Wickerhamomyces anomalus BS91 were tested against Monilinia fructigena and Monilinia fructicola in in vitro and in vivo trials. All yeast strains demonstrated antifungal activity at different levels depending on species, strain and pathogen. D hansenii KI2a and W.
Grzegorczyk M. +3 more
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