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      Efeito dos extratos aquoso e oleoso de Nim [Azadirachta indica A. Juss (Meliaceae)] na produção de patulina em maçãs contaminadas por Penicillium expansum Translated title: Effect of aqueous and oily extracts of Neem [Azadirachta indica A. Juss (Meliaceae)] on patulin production in apples contaminated with Penicillium expansum

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          Abstract

          A Região Sul do Brasil é grande produtora de maçã, sendo 80% destinada ao consumo in natura. As micotoxinas são metabólitos secundários de fungos presentes na cadeia alimentar como contaminantes, causando diversos efeitos toxicológicos e imunológicos. Considerando que a patulina seja uma micotoxina produzida por Penicillium expansum, principal contaminante da maçã propôs-se investigar a ação de extratos aquoso e oleoso de Nim (Azadirachta indica) em maçã artificialmente contaminada. Foram testados dois tipos de extratos: o extrato aquoso obtido de maceração de folhas de Nim nas concentrações de 5, 10, 20 e 30%, e o extrato oleoso comercial (DalNeem®), obtido de sementes de Nim, nas concentrações de 0,125, 0,25, 0,5, 1, 2 e 5%. Os extratos aquosos não alteram a produção da patulina em maçãs contaminadas artificialmente por P. expansum, mas o extrato oleoso obtido das sementes da planta diminuiu acentuadamente a produção de patulina, inclusive em concentrações inferiores a 0,5%.

          Translated abstract

          The South region of Brazil is a major apple producer, where 80% is destined to the "in natura" consumption. The mycotoxins are fungal secondary metabolites present as contaminants in the food chain, causing several toxicological and immunological effect. Patulin is a mycotoxin mainly produced by Penicillium expansum and well known as the main contaminant in apples. Due to this contamination, the aim of this work was to access the effect of Neem extract (Azadirachta indica) on artificially contaminated apples. Two types of Neem extracts were tested: the aqueous extracts of Neem leafs at 5, 10, 20 and 30% concentrations, and commercial seed oil of Neem (DalNeem®) at 0.125, 0.25, 0.5, 1, 2 and 5% in water. Although the addition of Neem aqueous extracts in artificially contaminated apples with P. expansum was unable to affect the patulin production, the Neem seed oil extract at concentrations as lower as 0.5%, caused a pronounced diminution over patulin production.

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          Morphological alterations in toxigenic Aspergillus parasiticus exposed to neem (Azadirachta indica) leaf and seed aqueous extracts.

          The mode of action of the extracts prepared from neem plant i.e., Azadirachta indica on aflatoxin formation in toxigenic Aspergillus species is not well understood. Aflatoxin production by A. parasiticus was suppressed depending on the concentration of the plant aqueous extract (0, 1.56, 3.12, 6.25, 12.5, and 50% v/v) added to the culture media at the time of spore inoculation. Aflatoxin production in fungal mycelia grown for 96 h in culture media containing 50% neem leaf and seed extracts was inhibited by approximately 90 and approximately 65% respectively. Under similar conditions, culture media amended with 1.56% of leaf or seed extract caused approximately 23 and approximately 7% inhibition respectively. Mycelial samples exposed to selected concentrations of the plant extract (1.56 or 50% v/v) collected and processed for morphological studies. Semi-thin longitudinal and cross sections prepared from control (untreated) and treated mycelia (1.56% v/v) revealed that alterations are limited to the vacuolation of the mycelial cytoplasm. Nevertheless, exposure to high concentration i.e., 50% v/v of the extract resulted in vacuolation of the mycelial cytoplasm and vesicle deformation causing attenuation of cell wall at variable intervals. Herniation of the cytoplasmic contents that was protruding from the mycelium was associated with deformation of the mycelium. Some mycelia showed a cleft between the cell wall and cytoplasm. Association of aflatoxin production with morphological changes suggest that probably integrity of the cell barriers particularly cell wall is critical in regulation of aflatoxin production and excretion.
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            The toxicological hazards of patulin.

            J. Hopkins (1993)
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              Inhibition of patulin production by Penicillium expansum cultured with neem (Azadirachta indica) leaf extracts.

              Aqueous extract of the leaves of neem [Azadirachta indica A. JUSS (Meliaceae)] was tested in vitro for antifungal activity against Penicillium expansum. Patulin production was inhibited during cultivation, when concentrations higher than 50 mg/ml of neem leaf extract was added to the culture medium. Analyses of mycotoxin production were performed by TLC and HPLC. Fungal growth and colony characteristics, in the presence of the extract, were investigated and compared with extract-free cultures. Copyright 2004 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Journal
                cr
                Ciência Rural
                Cienc. Rural
                Universidade Federal de Santa Maria (Santa Maria )
                1678-4596
                December 2007
                : 37
                : 6
                : 1518-1523
                Affiliations
                [1 ] Universidade Estadual de Maringá Brazil
                [2 ] Universidade Estadual de Maringá Brazil
                Article
                S0103-84782007000600002
                10.1590/S0103-84782007000600002
                0588f359-0ae1-4034-a96b-8bcc1a37b997

                http://creativecommons.org/licenses/by/4.0/

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                SciELO Brazil

                Self URI (journal page): http://www.scielo.br/scielo.php?script=sci_serial&pid=0103-8478&lng=en
                Categories
                AGRONOMY

                Horticulture
                Apple,Azadirachta indica,Neem,patulin,Penicillium expansum,maçã,Nim,patulina
                Horticulture
                Apple, Azadirachta indica, Neem, patulin, Penicillium expansum, maçã, Nim, patulina

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