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首页> 外文期刊>Brazilian Journal of Biology >Composi??o química e efeito inibitório in vitro dos óleos essenciais das cascas dos frutos de três espécies de Citrus e do limoneno sobre o crescimento micelial de Sclerotinia sclerotiorum
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Composi??o química e efeito inibitório in vitro dos óleos essenciais das cascas dos frutos de três espécies de Citrus e do limoneno sobre o crescimento micelial de Sclerotinia sclerotiorum

机译:三种柑橘和柠檬烯的果皮中香精油的化学组成及其体外抑制菌核盘菌菌丝体生长的作用

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Essential oils (EO) from aromatic and medicinal plants generally perform a diverse range of biological activities because they have several active constituents that work in different mechanisms of action. EO from Citrus peel have an impressive range of food and medicinal uses, besides other applications. EO from Citrus reticulata , C. sinensis and C. deliciosa were extracted from fruit peel and analyzed by GC-MS. The major constituent of EO under evaluation was limonene, whose concentrations were 98.54%, 91.65% and 91.27% for C. sinensis , C. reticulata and C. deliciosa , respectively. The highest potential of inhibition of mycelial growth was observed when the oil dose was 300 μL. Citrus oils inhibited fungus growth in 82.91% ( C. deliciosa ), 65.82% ( C. sinensis ) and 63.46% ( C. reticulata ). Anti- Sclerotinia sclerotiorum activity of 90% pure limonene and at different doses (20, 50, 100, 200 and 300 μL) was also investigated. This monoterpene showed to be highly active by inhibiting 100% fungus growth even at 200 and 300 μL doses. This is the first report of the in vitro inhibitory effect of natural products from these three Citrus species and its results show that there is good prospect of using them experimentally to control S. sclerotiorum , in both greenhouse and field conditions.
机译:芳香植物和药用植物的精油(EO)通常具有多种生物活性,因为它们具有几种以不同作用机理起作用的活性成分。除其他用途外,柑橘皮的EO还具有广泛的食品和药用用途。从果皮中提取网状柑橘,中华绒螯蟹和中华绒螯蟹的EO,并通过GC-MS进行分析。被评估的EO的主要成分是柠檬烯,其对中华C,网状re和美味。的浓度分别为98.54%,91.65%和91.27%。当油剂量为300μL时,观察到抑制菌丝体生长的最大潜力。柑橘油抑制真菌生长的比例分别为82.91%(C. deliciosa),65.82%(C. sinensis)和63.46%(C.reticulata)。还研究了90%纯柠檬烯和不同剂量(20、50、100、200和300μL)的抗核盘菌菌核病活性。该单萜即使在200和300μL剂量下也能通过抑制100%真菌生长而显示出高活性。这是关于这三种柑橘类天然产物的体外抑制作用的第一份报道,其结果表明,在温室和田间条件下,将其实验性地用于控制菌核病有很好的前景。

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