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果蝇幼虫对同类和异类的识别

The Identification of Congeners and Aliens by Drosophila Larvae.

作者信息

Del Pino Francisco, Jara Claudia, Pino Luis, Medina-Muñoz María Cristina, Alvarez Eduardo, Godoy-Herrera Raúl

机构信息

Laboratorio de Etología, Genética y Evolución de la Conducta, Programa de Genética Humana, Instituto de Ciencias Biomédicas, Facultad de Medicina, Universidad de Chile, Independencia 1027, Santiago, Chile.

Departamento de Biología, Facultad de Ciencias, Universidad de Playa Ancha de Ciencias de la Educación, Valparaíso, Chile.

出版信息

PLoS One. 2015 Aug 27;10(8):e0136363. doi: 10.1371/journal.pone.0136363. eCollection 2015.

Abstract

We investigated the role of Drosophila larva olfactory system in identification of congeners and aliens. We discuss the importance of these activities in larva navigation across substrates, and the implications for allocation of space and food among species of similar ecologies. Wild type larvae of cosmopolitan D. melanogaster and endemic D. pavani, which cohabit the same breeding sites, used species-specific volatiles to identify conspecifics and aliens moving toward larvae of their species. D. gaucha larvae, a sibling species of D. pavani that is ecologically isolated from D. melanogaster, did not respond to melanogaster odor cues. Similar to D. pavani larvae, the navigation of pavani female x gaucha male hybrids was influenced by conspecific and alien odors, whereas gaucha female x pavani male hybrid larvae exhibited behavior similar to the D. gaucha parent. The two sibling species exhibited substantial evolutionary divergence in processing the odor inputs necessary to identify conspecifics. Orco (Or83b) mutant larvae of D. melanogaster, which exhibit a loss of sense of smell, did not distinguish conspecific from alien larvae, instead moving across the substrate. Syn97CS and rut larvae of D. melanogaster, which are unable to learn but can smell, moved across the substrate as well. The Orco (Or83b), Syn97CS and rut loci are necessary to orient navigation by D. melanogaster larvae. Individuals of the Trana strain of D. melanogaster did not respond to conspecific and alien larval volatiles and therefore navigated randomly across the substrate. By contrast, larvae of the Til-Til strain used larval volatiles to orient their movement. Natural populations of D. melanogaster may exhibit differences in identification of conspecific and alien larvae. Larval locomotion was not affected by the volatiles.

摘要

我们研究了果蝇幼虫嗅觉系统在识别同类和异类中的作用。我们讨论了这些活动在幼虫在基质上导航中的重要性,以及对相似生态物种间空间和食物分配的影响。世界性的黑腹果蝇和地方性的帕瓦尼果蝇的野生型幼虫共同栖息在相同的繁殖地点,它们利用物种特异性挥发物来识别同种和向其物种幼虫移动的异类。高乔果蝇幼虫是帕瓦尼果蝇的姐妹物种,与黑腹果蝇在生态上隔离,对黑腹果蝇的气味线索没有反应。与帕瓦尼果蝇幼虫类似,帕瓦尼雌蝇×高乔雄蝇杂交种的导航受同种和异类气味影响,而高乔雌蝇×帕瓦尼雄蝇杂交种幼虫表现出与高乔果蝇亲本相似的行为。这两个姐妹物种在处理识别同种所需的气味输入方面表现出显著的进化差异。黑腹果蝇的Orco(Or83b)突变体幼虫嗅觉丧失,无法区分同种和异类幼虫,而是在基质上移动。黑腹果蝇的Syn97CS和rut幼虫虽然无法学习但能嗅觉,也在基质上移动。Orco(Or83b)、Syn97CS和rut基因座是黑腹果蝇幼虫定向导航所必需的。黑腹果蝇Trana品系的个体对同种和异类幼虫挥发物没有反应,因此在基质上随机导航。相比之下,Til-Til品系的幼虫利用幼虫挥发物来定向移动。黑腹果蝇的自然种群在识别同种和异类幼虫方面可能存在差异。幼虫的运动不受挥发物影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfc4/4552012/95db56f6935f/pone.0136363.g001.jpg

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