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首页> 外文期刊>International Journal of Acarology >Acaricidal activity of the plant sesquiterpenoids alpha-costic acid and inuloxin A against the cattle ectoparasitic tick, Rhipicephalus (Boophilus) annulatus
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Acaricidal activity of the plant sesquiterpenoids alpha-costic acid and inuloxin A against the cattle ectoparasitic tick, Rhipicephalus (Boophilus) annulatus

机译:植物Sesquiterpenoidsα-成熟酸和inuloxin A对抗牛异醛酸的杀螨剂活性,Rapicephalus(Boophilus)Annulatus

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摘要

The obligate ectoparasite Rhipicephalus (Boophilus) annulatus, also known as cattle tick, is the hard tick vector of babesiosis, a protozoal infection that causes severe meat production losses at huge economic costs. Although babesiosis was eradicated from the United States, its vector still exists in Mexico and different security measures are used to prevent its reintroduction into the U.S. Furthermore, the massive use of chemical acaricides during the last century has resulted in the development of resistance and toxicological problems. A possible and more sustainable alternative could be represented by the applications of biopesticides. Recently, two sesquiterpenoids, inuloxin A and alpha-costic acid isolated fromDittrichia viscosa, a perennial native plant of the Mediterranean basin, showed several interesting biological activities including acaricidal and antifeedant activities. Both inuloxin A and alpha-costic acid caused an impact on the hatch rate of the eggs and a larval mortality rate higher than 80% in vitro bioassays on eggs of R. annulatus. Moreover, the hatch rate of the eggs and the mortality rate of the larvae seem to be dependent on the timing of application of the compounds on the eggs. These results suggested a potential use of both compounds to control R. annulatus.
机译:Innulige octoparasite rhipicephalus(Boophilus)Annulatus,也称为牛蜱,是Babesiosis的硬蜱矢量,原生型感染导致严重的肉类生产损失以巨大的经济成本。虽然Babesiosis从美国根除,但它的载体仍然存在于墨西哥,并且使用不同的安全措施来防止其重新引入美国,而且在上个世纪的大规模使用化学杀螨剂导致抗性和毒理学问题的发展。可以通过生物化学的应用来表示可能的和更可持续的替代方案。最近,来自地中海盆地多年生植物植物的两种Sesquiterpenoids,inuloxina和α-成熟酸分离,均显示出几种有趣的生物学活性,包括杀螨剂和抗透镜活性。 inuloxin a和α-成熟酸无均对鸡蛋的孵化率产生影响,幼虫死亡率高于R. annulatus的卵子体外生物测定的80%。此外,鸡蛋的孵化率和幼虫的死亡率似乎取决于化合物在卵上的施用时机。这些结果表明两种化合物潜在使用来控制R. Annulatus。

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