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在黑腹果蝇的近亲塞舌尔果蝇中,嗅觉转变与对有毒果实的超专长化并行。

Olfactory shifts parallel superspecialism for toxic fruit in Drosophila melanogaster sibling, D. sechellia.

作者信息

Dekker Teun, Ibba Irene, Siju K P, Stensmyr Marcus C, Hansson Bill S

机构信息

Division of Chemical Ecology, Swedish University of Agricultural Sciences, PO Box 44, Alnarp SE-230 53, Sweden.

出版信息

Curr Biol. 2006 Jan 10;16(1):101-9. doi: 10.1016/j.cub.2005.11.075.

Abstract

Olfaction in the fruit fly Drosophila melanogaster is increasingly understood, from ligand-receptor-neuron combinations to their axonal projection patterns into the antennal lobe . Drosophila thus offers an excellent opportunity to study the evolutionary and ecological dynamics of olfactory systems. We compared the structure and function of the generalist D. melanogaster with that of specialist D. sechellia, which oviposits exclusively on morinda fruit . Our analyses show that whereas the fruit's headspace was dominated by acids, antennae responded most strongly to hexanoates. D. sechellia exhibited an extraordinarily strong response to methyl hexanoate (MeHex). Behaviorally, D. sechellia was much more attracted to these morinda fruit volatiles than was D. melanogaster. The high sensitivity to MeHex was paralleled by a 2.5x-3 x overrepresentation of MeHex neurons on the antenna and a concordant 2.9 x increase in volume of the corresponding glomerulus as compared to D. melanogaster. In addition, the MeHex neuron exhibited an extreme sensitivity down to femtograms of its ligand. In contrast, no peripherally mediated shift was found paralleling D. sechellia's increased attraction to acids. These findings are a demonstration of evolution acting at several levels in the olfactory circuitry in mediating a fruit fly's unique preference for fruit toxic to its sibling species .

摘要

从配体 - 受体 - 神经元组合到它们向触角叶的轴突投射模式,人们对果蝇(黑腹果蝇)的嗅觉了解得越来越多。因此,果蝇为研究嗅觉系统的进化和生态动态提供了绝佳的机会。我们将多食性的黑腹果蝇与专食性的毛里求斯果蝇的结构和功能进行了比较,毛里求斯果蝇只在巴戟天属果实上产卵。我们的分析表明,虽然果实的顶空以酸为主,但触角对己酸酯的反应最为强烈。毛里求斯果蝇对己酸甲酯(MeHex)表现出异常强烈的反应。在行为上,毛里求斯果蝇比黑腹果蝇更容易被这些巴戟天属果实挥发物所吸引。与黑腹果蝇相比,毛里求斯果蝇对MeHex的高敏感性伴随着触角上MeHex神经元数量多出2.5至3倍,以及相应嗅小球体积一致地增加2.9倍。此外,MeHex神经元对其配体表现出低至飞克级的极端敏感性。相比之下,未发现与毛里求斯果蝇对酸的吸引力增加并行的外周介导的变化。这些发现证明了进化在嗅觉回路的多个层面发挥作用,介导果蝇对其同属物种有毒的果实的独特偏好。

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