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在宿主烟草夜蛾的饮食中添加植物固醇可减轻α-茄碱对其寄生蜂美洲幼虫腐臭病菌的毒性。

Alleviation of α-tomatine-induced toxicity to the parasitoid,Hyposoter exiguae, by phytosterols in the diet of the host,Heliothis zea.

机构信息

Department of Entomology, University of California, 95616, Davis, California.

出版信息

J Chem Ecol. 1981 Nov;7(6):927-46. doi: 10.1007/BF00987618.

Abstract

The solitary, endoparasitic ichneumonid,Hyposoter exiguae (Viereck) is a parasitoid of the tomato fruitworm,Heliothis zea (Boddie). However, the parasitoid is deleteriously affected by the tomato glycoalkaloid, α-tomatine, ingested from hosts (H. zea) fed on artificial diets or semipurified extracts of tomato plants that contained α-tomatine. α-Tomatine causes prolonged larval development; disruption or prevention of pupal eclosion; deformation of antennal, abdominal, and genital structures; and reduction in adult weight and longevity of the parasitoid. These toxic effects are exacerbated when the dietary dose of α-tomatine is increased from 12 μmol to 20 μmol/g dry wt of diet. However, the toxicity of α-tomatine is attenuated in parasitoids reared from hosts fed on artificial diets that contain equimolar or supramolar amounts of 3β-OH-sterols admixed with α-tomatine. Further, the toxicity of extracts from the foliage of different cultivars of tomatoes toH. exiguae is contingent upon the composite levels of α-tomatine and total phytosterol (free and esterified). Cultivars with a low total sterol-tomatine ratio are more toxic toH. exiguae. The possible mode of action of α-tomatine toxicity toH. exiguae by disruption of sterol metabolism is discussed.

摘要

独居的内寄生姬蜂,Hyposoter exiguae (Viereck) 是番茄蛀果蛾,Heliothis zea (Boddie) 的寄生蜂。然而,这种寄生蜂会受到番茄糖苷生物碱 α-茄碱的不利影响,这种生物碱是从以含有 α-茄碱的人工饲料或番茄植物半纯化提取物为食的宿主(H. zea)中摄入的。α-茄碱会导致幼虫发育延长;破坏或阻止蛹羽化;触角、腹部和生殖器结构变形;以及寄生蜂成虫体重和寿命的减少。当膳食中的 α-茄碱剂量从 12 μmol 增加到 20 μmol/g 干重饲料时,这些毒性作用会加剧。然而,当寄生蜂从以含有 α-茄碱的人工饲料为食的宿主中饲养时,α-茄碱的毒性会减弱,这些饲料中含有等摩尔或超摩尔的 3β-OH-固醇与 α-茄碱混合。此外,不同番茄品种叶片提取物对H. exiguae 的毒性取决于 α-茄碱和总植物固醇(游离和酯化)的综合水平。总固醇-茄碱比例低的品种对 H. exiguae 的毒性更大。讨论了 α-茄碱通过破坏固醇代谢对 H. exiguae 产生毒性的可能作用模式。

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