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含氰糖苷在丝带凤蝶(鳞翅目,凤蝶科)生命周期中的重要作用。

Intimate roles for cyanogenic glucosides in the life cycle of Zygaena filipendulae (Lepidoptera, Zygaenidae).

作者信息

Zagrobelny Mika, Bak Søren, Olsen Carl Erik, Møller Birger Lindberg

机构信息

Department of Plant Biology and Center for Molecular Plant Physiology, University of Copenhagen, 40 Thorvaldsensvej, DK-1871 Frederiksberg C, Copenhagen, Denmark.

出版信息

Insect Biochem Mol Biol. 2007 Nov;37(11):1189-97. doi: 10.1016/j.ibmb.2007.07.008. Epub 2007 Jul 25.

Abstract

Zygaena larvae sequester the cyanogenic glucosides (CNglcs) linamarin and lotaustralin from their food plants (Fabaceae) and also de novo biosynthesize these compounds. In Zygaenidae, CNglcs serve as defence compounds during the entire life cycle, and their content and ratio are tightly regulated. We demonstrate that Z. filipendulae males transfer a nuptial gift of CNglcs to females during mating, and that females prefer males with a higher content of CNglcs for mating. Average HCN emission from female imagines is 19 times higher than from males, suggesting that plumes of HCN emitted from the perching female may serve to attract flying males. Analysis of the linamarin and lotaustralin content and ratio within different tissues in Z. filipendulae larvae shows that integument and haemolymph constitute the main sites of CNglc deposition. The data suggest that CNglcs may serve an additional role as storage compounds of reduced nitrogen that is mobilized during the transition of the last instar larva to imago, most likely to provide nitrogen for chitin synthesis. At least one of the enzymes responsible for de novo biosynthesis of CNglcs in Z. filipendulae is located in the integument. In conclusion, CNglcs play many important and different roles during the entire life cycle of Z. filipendulae in addition to defence.

摘要

斑蛾幼虫从其取食的植物(豆科)中摄取含氰糖苷(CNglcs)亚麻苦苷和百脉根苷,并且还能从头生物合成这些化合物。在斑蛾科中,CNglcs在整个生命周期中都作为防御化合物,其含量和比例受到严格调控。我们证明,细枝斑蛾的雄性在交配时会向雌性传递一份含CNglcs的新婚礼物,并且雌性更喜欢与含CNglcs量较高的雄性交配。雌性成虫的平均HCN排放量比雄性高19倍,这表明停歇的雌性所释放的HCN羽流可能用于吸引飞行中的雄性。对细枝斑蛾幼虫不同组织中亚麻苦苷和百脉根苷的含量及比例分析表明,体壁和血淋巴是CNglc沉积的主要部位。数据表明,CNglcs可能还具有作为还原态氮储存化合物的额外作用,在末龄幼虫向成虫转变过程中被调动,最有可能为几丁质合成提供氮。负责细枝斑蛾中CNglcs从头生物合成的至少一种酶位于体壁中。总之,除了防御作用外,CNglcs在细枝斑蛾的整个生命周期中还发挥着许多重要且不同的作用。

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