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Plusia festucae 蛾产生性信息素成分的生物合成途径。

Biosynthetic Pathway for Sex Pheromone Components Produced in a Plusiinae Moth, Plusia festucae.

机构信息

Graduate School of Bio-Applications and Systems Engineering, Tokyo University of Agriculture and Technology Koganei, Tokyo, Japan.

出版信息

Front Endocrinol (Lausanne). 2011 Nov 14;2:74. doi: 10.3389/fendo.2011.00074. eCollection 2011.

Abstract

While many Plusiinae species commonly secrete (Z)-7-dodecenyl acetate (Z7-12:OAc) as a key pheromone component, female moths of the rice looper (Plusia festucae) exceptionally utilize (Z)-5-dodecenyl acetate (Z5-12:OAc) to communicate with their partners. GC-MS analysis of methyl esters derived from fatty acids included in the pheromone gland of P. festucae showed a series of esters monounsaturated at the ω7-position, i.e., (Z)-5-dodecenoate, (Z)-7-tetradecenoate, (Z)-9-hexadecenoate (Z9-16:Me), and (Z)-11-octadecenoate (Z11-18:Me). By topical application of D(3)-labled palmitic acid (16:Acid) and stearic acid (18:Acid) to the pheromone glands, similar amounts of D(3)-Z5-12:OAc were detected. The glands treated with D(13)-labeled monoenoic acids (Z9-16:Acid and Z11-18:Acid), which were custom-made by utilizing an acetylene coupling reaction with D(13)-1-bromohexane, also produced similar amounts of D(13)-Z5-12:OAc. These results suggested that Z5-12:OAc was biosynthesized by ω7-desaturase with low substrate specificity, which could introduce a double bond at the 9-position of a 16:Acid derivative and the 11-position of an 18:Acid derivative. Additional experiments with the glands pretreated with an inhibitor of chain elongation supported this speculation. Furthermore, a comparative study with another Plusiinae species (Chrysodeixis eriosoma) secreting Z7-12:OAc indicated that the β-oxidation systems of P. festucae and C. eriosoma were different.

摘要

虽然许多 Plusiinae 物种通常分泌(Z)-7-十二碳烯基乙酸酯(Z7-12:OAc)作为关键的信息素成分,但稻纵卷叶螟(Plusia festucae)的雌性蛾异常利用(Z)-5-十二碳烯基乙酸酯(Z5-12:OAc)与它们的伴侣进行交流。对来自 P. festucae 信息素腺体中的脂肪酸甲酯进行 GC-MS 分析,显示出一系列在 ω7 位具有单不饱和性的酯,即(Z)-5-十二碳烯酸酯、(Z)-7-十四碳烯酸酯、(Z)-9-十六碳烯酸(Z9-16:Me)和(Z)-11-十八碳烯酸(Z11-18:Me)。通过将 D(3)-标记的棕榈酸(16:Acid)和硬脂酸(18:Acid)涂敷到信息素腺体上,检测到类似量的 D(3)-Z5-12:OAc。用乙炔偶联反应与 D(13)-1-溴己烷定制的 D(13)-标记的单烯酸(Z9-16:Acid 和 Z11-18:Acid)处理腺体,也产生了类似量的 D(13)-Z5-12:OAc。这些结果表明 Z5-12:OAc 是由具有低底物特异性的 ω7-去饱和酶生物合成的,该酶可以在 16:Acid 衍生物的 9 位和 18:Acid 衍生物的 11 位引入双键。用抑制剂预处理腺体的额外实验支持了这一推测。此外,与另一种分泌 Z7-12:OAc 的 Plusiinae 物种(Chrysodeixis eriosoma)的比较研究表明,P. festucae 和 C. eriosoma 的β-氧化系统不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95b0/3355991/37c42e2f83e9/fendo-02-00074-g001.jpg

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