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蝴蝶中雄性性信息素的释放与雌性配偶选择

Male sex pheromone release and female mate choice in a butterfly.

作者信息

Andersson Johan, Borg-Karlson Anna-Karin, Vongvanich Namphung, Wiklund Christer

机构信息

KTH, School of Chemistry and Engineering, Department of Chemistry, Organic Chemistry, Ecological Chemistry Group, SE-100 44 Stockholm, Sweden.

出版信息

J Exp Biol. 2007 Mar;210(Pt 6):964-70. doi: 10.1242/jeb.02726.

Abstract

In butterflies female mate choice is influenced by both visual and olfactory cues, the latter of which are important at close range. Males of the green-veined butterfly, Pieris napi, are known to release citral (mixture of geranial and neral, 1:1), but its role(s) and conditions of release are not known. Here, we show that male P. napi release citral when interacting with conspecific males, conspecific females, heterospecific males and also when alone. The amount of citral released correlated strongly with male flight activity, which explained more than 70% of the variation. This suggests that males do not exercise control over turning release on or off, but rather that citral is emitted as a passive physical process during flight. Electroantennogram experiments showed that female antennal response was ten times more sensitive to citral than male response. Females expressed acceptance behavior when exposed to models made with freshly excised male wings or those treated with citral following chemical extraction, but not to ones with extracted wings only. Hence, these behavioral and electrophysiological tests provide strong evidence that citral is a signal from the male directed to the female during courtship, and that it functions as a male sex pheromone.

摘要

在蝴蝶中,雌性的配偶选择受到视觉和嗅觉线索的影响,其中嗅觉线索在近距离时很重要。已知绿脉蝴蝶粉蝶(Pieris napi)的雄蝶会释放柠檬醛(香叶醛和橙花醛的混合物,比例为1:1),但其作用和释放条件尚不清楚。在这里,我们表明粉蝶雄蝶在与同种雄蝶、同种雌蝶、异种雄蝶相互作用时以及单独时都会释放柠檬醛。释放的柠檬醛量与雄蝶的飞行活动密切相关,这解释了超过70%的变化。这表明雄蝶无法控制柠檬醛的释放与否,而是在飞行过程中作为一个被动的物理过程释放柠檬醛。触角电图实验表明,雌蝶触角对柠檬醛的反应比雄蝶敏感十倍。当暴露于用新鲜切除的雄蝶翅膀制作的模型或化学提取后用柠檬醛处理的模型时,雌蝶表现出接受行为,但对仅用提取后的翅膀制作的模型则没有反应。因此,这些行为学和电生理学测试提供了有力证据,表明柠檬醛是雄蝶在求偶过程中向雌蝶发出的信号,并且它起到雄性性信息素的作用。

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