首页> 美国卫生研究院文献>Journal of the Royal Society Interface >Sex pheromone of a coccoid insect with sexual and asexual lineages: fate of an ancestrally essential sexual signal in parthenogenetic females
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Sex pheromone of a coccoid insect with sexual and asexual lineages: fate of an ancestrally essential sexual signal in parthenogenetic females

机译:具有性和无性世系的球状昆虫的性信息素:孤雌生殖女性祖先必需的性信号的命运

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摘要

Sex pheromones play a central role in intersexual communication for reproduction in many organisms. Particularly in insects, reproductive isolation that leads to speciation is often achieved by shifts of pheromone chemistries. However, the divergence and evolution of pheromones remain largely unknown. This study reveals a unique evolutionary consequence for terpenoid pheromones in coccoid insects. Coccoids, such as mealybugs, show clear sexual dimorphism: males are dwarf and short-lived, whereas females are wingless and almost immobile. Female pheromones are therefore indispensable for males to navigate for sexual reproduction, but some females can reproduce asexually. Interestingly, a derived asexual lineage that reproduces by parthenogenesis coexists with its ancestral lineage that reproduces sexually in a population of the pineapple mealybug, Dysmicoccus brevipes. Here, we isolated, characterized and synthesized a novel monoterpene, (−)-(anti-1,2-dimethyl-3-methylenecyclopentyl)acetaldehyde, as a pheromone of the sexual females of D. brevipes. This monoterpene aldehyde, with an irregular linkage of isoprene units, is notable, because all mealybug pheromones previously reported are carboxylic esters of terpenols. This compound was, however, never produced by the asexual females. As a consequence of acquiring parthenogenetic reproduction, the asexual females appear to have abandoned the production of the sex pheromone, which had been essential to attracting males in their ancestors.
机译:性信息素在用于许多生物繁殖的性交交流中起着核心作用。特别是在昆虫中,通常通过信息素化学的变化来实现导致物种形成的生殖隔离。然而,信息素的发散和进化在很大程度上仍是未知的。这项研究揭示了类球虫昆虫中萜类信息素的独特进化结果。球形粉虱(如粉虱)表现出明显的两性分化:雄性矮小且寿命短,而雌性无翅且几乎不活动。因此,雌性信息素对于雄性进行性繁殖是必不可少的,但是某些雌性可以无性繁殖。有趣的是,通过孤雌生殖繁殖的无性生殖谱系与其在菠萝粉虱(Dysmicoccus brevipes)种群中有性繁殖的祖先谱系共存。在这里,我们分离,表征和合成新型的单萜,(-)-(反-1,2-二甲基-3-亚甲基环戊基)乙醛,作为D. brevipes性雌性的信息素。具有异戊二烯单元不规则连接的单萜醛是值得注意的,因为先前报道的所有粉虱信息素都是萜烯醇的羧酸酯。但是,这种化合物从未由无性雌性产生。由于获得了孤雌生殖繁殖,无性雌性似乎放弃了性信息素的生产,而这对于吸引雄性祖先是必不可少的。

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