The effect of two anti-fungal treatments (metrafenone and boscalid + kresoxim-methyl) on the color and phenolic profile of Tempranillo and Graciano red wines has been studied. To evaluate possible modifications in color and phenolic composition of wines, control and wines elaborated with treated grapes under good agricultural practices were analyzed. Color was assessed by Glories and CIELab parameters. Color changes were observed for treated wines with boscalid + kresoxim-methyl, leading to the production of wines with less color vividness. Phenolic profile was characterized by HPLC analysis. Boscalid + kresoxim-methyl treatment promoted the greatest decrease on the phenolic content in wines.
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http://dx.doi.org/10.3390/molecules19068093 | DOI Listing |
Redox Rep
December 2024
Biomedical Magnetic Resonance Research Group, Louvain Drug Research Institute, Brussels, Belgium.
Pest Manag Sci
March 2023
Department of Plant Protection, Faculty of Agriculture, Tokat Gaziosmanpaşa University, Tokat, Turkey.
Background: Grape and leaf quality are often severely reduced by fungi such as grey rot Botrytis cinerea Pers., powdery mildew Erysiphe necator Schwein, and downy mildew Plasmopara viticola (Berk. & M.
View Article and Find Full Text PDFAquat Toxicol
November 2022
Key Laboratory of Pesticide Toxicology and Application Technique, Shandong Agricultural University, Tai'an, Shandong 271018, PR China; College of Plant Protection, Shandong Agricultural University, Tai'an, Shandong 271018, PR China; Research Center of Pesticide Environmental Toxicology, Shandong Agricultural University, Tai'an, Shandong 271018, PR China. Electronic address:
Quinone outside inhibitor fungicides (QoIs) and succinate dehydrogenase inhibitor fungicides (SDHIs) were classified as highly or moderately toxic to nontarget aquatic organisms, which deterred their application in paddy scenario. Currently, the mechanism of toxicity regarding which factors govern their risk ranking in fish species are not fully explored. In this study, adult zebrafish were exposed to four QoIs (pyraclostrobin, trifloxystrobin, kresoxim-methyl, and azoxystrobin) and three SDHIs (isopyrazam, thifluzamide, and boscalid) to assess its acute toxicity and effects on tissue accumulation and gill injury.
View Article and Find Full Text PDFIn accordance with Article 43 of Regulation (EC) 396/2005, EFSA received a request from the European Commission to provide support for the preparation of the EU position for 52nd session of the Codex Committee on Pesticide Residues (CCPR). In 2019, JMPR evaluated 20 active substances regarding the setting of toxicological reference values to be used in consumer risk assessment (acetochlor, boscalid, chlorothalonil, cyprodinil, dicamba, mesotrione, metaflumizone, thiabendazole, afidopyropen, buprofezin, clethodim, dimethoate, metconazole, omethoate, pyflubumide, pyridate, pyrifluquinazon, tolclofos-methyl, triflumuron, valifenalate) and 47 active substance regarding the setting of Maximum Residue Limits (MRLs) (acetochlor, azoxystrobin, boscalid, chlorantraniliprole, chlorothalonil, cyantraniliprole, cyprodinil, dicamba, fenazaquin, flonicamid, flupyradifurone, fosetyl-Al, glyphosate, mesotrione, metaflumizone, S-methoprene, pendimethalin, spirotetramat, tebuconazole, thiabendazole, acetamiprid, afidopyropen, benzovindiflupyr, bifenthrin, buprofezin, carbendazim, clethodim, cyclaniliprole, cypermethrins, dimethoate, fluazifop-p-butyl, fluensulfone, kresoxim-methyl, mandestrobin, metconazole, omethoate, penthiopyrad, picoxystrobin, pydiflumetofen, pyflubumide, pyrifluquinazon, pyriofenone, pyriproxyfen, tolclofos-methyl, tolfenpyrad, triflumuron, valifenalate). EFSA prepared comments on the Codex MRL proposals and the proposed toxicological reference values.
View Article and Find Full Text PDFPlant Dis
February 2022
Fruit Research and Extension Center, Department of Plant Pathology and Environmental Microbiology, The Pennsylvania State University, Biglerville, PA 17307.
Apple growers in the Mid-Atlantic region of the U.S.A.
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