河滨四头藤叶、花蕾和茎精油对微头藤幼虫的活性研究。

Wilsandrei Cella, Isabelle Luiz Rahal, Gabriela Catuzo Canônico Silva, Ezilda Jacomassi, Ranulfo Piau Junior, José Eduardo Gonçalves, Daniela Dib Gonçalves, Zilda Cristiani Gazim
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引用次数: 0

摘要

在世界各地,牲畜的主要问题是由体外寄生虫引起的,然而,商业上的杀螨剂对环境有毒,对“同一健康”有害。因此,研究越来越集中于开发天然产品作为蜱虫控制的替代品。摘要本研究以河滨龙蒿(Tetradenia riparia)的叶、花蕾和茎为原料,研究其精油的杀虫效果。通过气相色谱-质谱联用(GC-MS)测定了这些EOs的化学成分。在半自然条件下,采用幼虫包试验,在浓度为100.000 ~ 40µg/mL的幼虫上进行试验。其化学成分主要为倍半萜类化合物(含氧化合物和烃类),而叶、花蕾和茎中的主要化合物分别为14-羟基-9-表石竹烯、t -二酚和6-7-脱氢精酮。结果表明,叶的杀虫活性最高(LC99.9 = 83.53µg/mL)。当在半自然条件下进行测试时,所有复合测试的效率都在98%以上。结果表明,这些活性分子在离体和离地均能有效杀灭微加白僵菌幼虫,证明该植物具有显著的生物活性分子。
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Activity of essential oils from leaves, flower buds and stems of Tetradenia riparia on Rhipicephalus (Boophilus) microplus larvae.

Around the world, the main problems of livestock are caused by ectoparasites, however, commercial acaracide are toxic to the environment and detrimental to One Health. Therefore, research has increasingly focused on development of natural products as alternatives for tick control. The purpose of this study was to evaluate the larvicidal effect on Rhipicephalus (Boophilus) microplus, through use of essential oils (EOs) extracted from the leaves, flower buds and stems of Tetradenia riparia. The chemical composition of these EOs was determined through gas chromatography coupled to mass spectrometry (GC-MS). They were tested on larvae at concentrations of 100.000 to 40 µg/mL, using the larval packet test and under semi-natural conditions. The main class of compounds in the chemical composition was sesquiterpenes (both oxygenates and hydrocarbons), whereas the predominant compounds in the leaves, flower buds and stems were 14-hydroxy-9-epi-caryophyllene, T-cadinol and 6-7-dehydroroyleanone, respectively. The leaves proved to be the most effective, with highest larvicidal activity (LC99.9 = 83.53 µg/mL). When tested under semi-natural conditions, the oils obtained efficiency above 98% in all compound tests. The results indicated that these EOs were effective against R. (B.) microplus larvae in vitro and ex-situ, proving that this plant has bioactive molecules with significant larvicidal activity.

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