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蜕皮甾类生物合成和胚胎发育在以经选择性修饰甾醇谱的植物性饮食(普通小麦)饲养的昆虫(飞蝗)中受到干扰。

Ecdysteroid biosynthesis and embryonic development are disturbed in insects (Locusta migratoria) reared on plant diet (Triticum sativum) with a selectively modified sterol profile.

机构信息

Laboratoire de Biochimie Végétale de l'Université Louis Pasteur, Unité Associée au Centre National de la Recherche Scientifique 1182, 28 rue Goethe, 67 000 Strasbourg, France.

出版信息

Proc Natl Acad Sci U S A. 1987 Feb;84(3):643-7. doi: 10.1073/pnas.84.3.643.

Abstract

Wheat seedlings germinating in the presence of the systemic fungicide fenpropimorph accumulate 9beta,19-cyclopropylsterols (95% of total sterols) in place of Delta(5)-sterols, which are normally produced in these plants. Adult females of the phytophagous insect Locusta migratoria show a dramatic decrease in their cholesterol content when reared on fenpropimorph-treated wheat. These females lay eggs with the ecdysteroid concentration reduced by up to 80% as compared to controls. Injection of fenpropimorph to the insects or feeding them on wheat coated with the fungicide (normal sterol composition) does not affect their sterol or ecdysteroid profiles; addition of cholesterol to fenpropimorph-treated wheat prior to feeding restores normal ecdysteroid titers in the insects. The severe reduction of the ecdysteroid content in eggs laid by females reared on fenpropimorph-treated wheat is associated with a series of developmental arrests and/or abnormalities. The results show that the dietary 9beta,19-cyclopropylsterols cannot be used by Locusta in place of Delta(5)-sterols for ecdysteroid biosynthesis. They suggest that the selective inhibition of specific enzymes in the sterol biosynthetic pathway of the plants can be used as a strategy to control insect development.

摘要

在系统性杀菌剂 Fenpropimorph 存在的情况下发芽的小麦幼苗会积累 9β,19-环丙基甾醇(总甾醇的 95%),而不是正常情况下在这些植物中产生的Δ(5)-甾醇。以 Fenpropimorph 处理的小麦为食的植食性昆虫Locusta migratoria 的雌性成虫胆固醇含量明显下降。与对照相比,这些雌性产下的卵中的蜕皮甾酮浓度降低了多达 80%。向昆虫注射 Fenpropimorph 或用涂有该杀菌剂(正常甾醇组成)的小麦喂养它们,不会影响它们的甾醇或蜕皮甾酮图谱;在喂食前向 Fenpropimorph 处理的小麦中添加胆固醇可使昆虫中的蜕皮甾酮含量恢复正常。在 Fenpropimorph 处理的小麦上饲养的雌性所产的卵中蜕皮甾酮含量的严重减少与一系列发育停滞和/或异常有关。结果表明,昆虫不能将饮食中的 9β,19-环丙基甾醇替代Δ(5)-甾醇用于蜕皮甾酮生物合成。它们表明,植物甾醇生物合成途径中特定酶的选择性抑制可以用作控制昆虫发育的策略。

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本文引用的文献

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