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首页> 外文期刊>Química Nova >CONSTITUINTES QUíMICOS E ATIVIDADE FITOTóXICA DAS FOLHAS DE Annona nutans
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CONSTITUINTES QUíMICOS E ATIVIDADE FITOTóXICA DAS FOLHAS DE Annona nutans

机译:番荔枝叶的化学成分和植物抗氧活性

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The phytochemical investigation and evaluation of the phytotoxic effect of the extract and fractions obtained from the leaves of Annona nutans(R. E. Fr.) R. E. Fr. were performed. Phytotoxic activity was assessed on radicle and hypocotyl of Allium cepa and Lactuca sativa, where chloroform and ethyl acetate fractions proved active. Phytochemical investigation of the chloroform fraction was allowed identification of polyketides derivatives: triacontanal, 16-hentriacontane, octacosanol and triacontanol, using the 1H NMR technique associated with data from GC/MS. Using ethyl acetate fraction, with low activity, flavonoids 3-O-β-D-galactopyranosyl-isorhamnetin, 3-O-β-D-galactopyranosyl-quercetin and 3-O-β-D-apiofuranosyl-(1→2)-galactopyranosyl-quercetin were identified, determined by spectrometric techniques one and two-dimensional NMR, combined with mass spectral data. All substances are being reported for the first time in Annona nutans. The phytotoxic activity of chloroform fraction may be related to the presence of triacontanol and similar substances. Triacontanol stimulates growth at very low concentrations, but can have an inhibitory effect at higher concentrations, such as those reported for auxin analogs. The toxicity assay using Artemia salina (BST) was also performed, with the chloroform fraction showing a negligible lethal dose, LD50 = 500 mg mL-1, while the other fractions and extracts showed no activity. Thus, the presence of acetogenins was ruled out.
机译:从Annona nutans(R。E. Fr.)R. E. Fr.的叶子中获得的提取物和馏分的植物化学研究和植物毒性作用的评估。被执行。评估了洋葱,洋葱和苜蓿的胚根和下胚轴的植物毒性活性,其中氯仿和乙酸乙酯组分被证明具有活性。使用 1 H NMR技术与GC / MS数据相关联,可以对氯仿馏分进行植物化学研究,从而鉴定聚酮化合物衍生物:三con烷,16-三七烷,辛三醇和三二十烷醇。使用低活性的乙酸乙酯馏分,类黄酮3-O-β-D-吡喃半乳糖基-异鼠李素,3-O-β-D-吡喃半乳糖基-槲皮素和3-O-β-D-吡喃呋喃糖基-(1→2)-鉴定了半乳糖吡喃糖基-槲皮素,通过光谱技术一维和二维NMR,结合质谱数据来确定。 Annona nutans中首次报告了所有物质。氯仿馏分的植物毒性活性可能与金刚烷醇和类似物质的存在有关。金刚烷醇在极低的浓度下会刺激生长,但在较高的浓度下会产生抑制作用,例如生长素类似物报道的那些。还使用卤虫卤(BST)进行了毒性试验,氯仿馏分的致死剂量可以忽略不计,LD 50 = 500 mg mL -1 ,其他馏分提取物无活性。因此,排除了乙酸原素的存在。

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