首页> 外文会议>Bioinformatics and Biomedical Engineering , 2009. ICBBE 2009 >Structure Identification of an Acaricidal Active Ingredient From Green Walnuts Husks (Juglans regia)
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Structure Identification of an Acaricidal Active Ingredient From Green Walnuts Husks (Juglans regia)

机译:青核桃果壳(胡桃木)杀螨活性成分的结构鉴定

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Most plants could produce bioactive substances including alkaloids, flavonoids, terpenes and relative materials, which are poisonous or have antifeedant effect to herbivorous animals, including some insects. Some well-known pesticides originated from plant bioactive substances have been successfully identified and used, for example, the azadirachtin from neem, nicotine from tobacco, rotenone and deguelin from derris, and pyrethrin from pyrethrum. It's necessary to extract, separate and identify single compounds from plants with biological activity in order to use them directly on crop protection, or to use them as model to synthesize new pesticides without pollution. The green walnut husks contain many kinds of bioactive compounds. By now more than 16 kinds of important components have been found, including tannin, walnuts quinone (juglune), nuts Glycoside (juglanin), alpha-hydride quinone walnuts (alpha-Hydrojuglone) and beta-hydride quinone walnuts (beta-Hydrojuglone), naphthalene Qian (naphthazarin), gallic acid, walnuts drunk alkaloids (C10H8O3), 1, 4-naphthoquinone and some pigments. We have found that the petroleum-ether extracts of walnut have strong acaricidal activity, but the major compounds of the extracts and the structures of the compounds are unclear. Here we isolated one bioactive fraction G7 from the green walnut husks which have better acaricidal activity and identified the structure of the compound. The fraction was found to be a signal compound by two-dimensional thin-layer chromatography and High Performance Liquid Chromatography (HPLC), and the HPLC analysis also showed the absorbance peak at 222 nm wavelength of G7 was the same as that of methyl palmitate reported by Moshitzky and the molecular weight of G7 was identified by mass spectrometry, and the result showed the G7 have the same MW as methyl palmitate. Furthermore the molecular structure was analyzed- with the nuclear magnetic resonance spectroscopy and the infrared spectrum. It was found that G7 had the same molecular formula as methyl palmitate C17H34O2. Then, G7 was compared with methyl palmitate through thin-layer chromatography and HPLC, and it was found that G7 had the same Rt value 0.6 on TLC and the same absorbance peak at 222 nm wavelength in HPLC as methyl palmitate. So the G7 fraction was confirmed to be the methyl palmitate.
机译:大多数植物会产生生物活性物质,包括生物碱,类黄酮,萜烯和相关物质,这些物质对草食动物(包括某些昆虫)有毒或具有拒食作用。已成功鉴定和使用了一些著名的源自植物生物活性物质的农药,例如印em中的印za素,烟草中的尼古丁,芦苇中的鱼藤酮和地精蛋白以及除虫菊中的除虫菊酯。有必要从具有生物活性的植物中提取,分离和鉴定单一化合物,以将其直接用于作物保护,或将其用作合成无污染新农药的模型。绿色核桃壳含有多种生物活性化合物。到目前为止,已发现16多种重要成分,其中包括单宁,核桃醌(胡桃),坚果糖苷(胡桃素),α-氢化醌胡桃(α-氢juglone)和β-氢化醌胡桃(β-Hydrojuglone),萘,萘没食子酸,核桃醉生物碱(C 10 H 8 O 3 ),1、4-萘醌和一些色素。我们发现核桃的石油醚提取物具有很强的杀螨活性,但是提取物中的主要化合物和化合物的结构尚不清楚。在这里,我们从绿色核桃壳中分离出一种具有较高杀螨活性的生物活性级分G 7 ,并鉴定了该化合物的结构。通过二维薄层色谱法和高效液相色谱法(HPLC)发现该级分是信号化合物,HPLC分析还显示G 7 在222 nm波长处的吸收峰为与Moshitzky报道的棕榈酸甲酯相同,并通过质谱鉴定了G 7 的分子量,结果表明G 7 具有相同的M W 为棕榈酸甲酯。此外,分析了分子结构- 核磁共振波谱和红外光谱发现G 7 具有与棕榈酸甲酯C 17 H 34 O 2 相同的分子式。然后,通过薄层色谱和HPLC比较G 7 与棕榈酸甲酯,发现G 7 在TLC上具有相同的Rt值0.6和相同的吸光度。在HPLC中在222 nm波长处的峰为棕榈酸甲酯。因此证实了G 7 馏分是棕榈酸甲酯。

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