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Patterns of sperm use by twice-mated female Queensland fruit flies

机译:两次交配的昆士兰雌性果蝇的精子使用模式

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摘要

Multiple mating by females, polyandry, is common in insects, including in tephritid fruit flies. Female insects that remate commonly store sperm of multiple males. How the sperm of different males contribute to paternity is an important element of sexual selection. Sexual behavior and reproduction of the Queensland fruit fly (Qfly), Bactrocera tryoni, has been extensively investigated both in relation to understanding this economically important species' reproductive biology and in relation to implications for Sterile Insect Technique (SIT), whereby sterile flies are released to constrain reproduction of pest populations. Despite numerous studies of pre- and postcopulatory sexual selection in Qfly, there have been no direct studies of paternity patterns in polyandrous female Qflies. We used two morphologically distinguishable lines to investigate patterns of sperm use in Qfly. The two lines showed comparable mating performance evidenced by similar mating and remating frequency, copula duration, and proportion of second mate paternity (P2) between reciprocal crosses. The mechanism of sperm usage, with P2 close to 0.5 immediately after the second mating followed by gradual decrease of P2 as females aged, is most consistent with stratification or repositioning of sperm. Patterns observed in the present study are compared with the available information from other tephritid fruit flies, and are discussed in relation to this species' reproductive biology, known patterns of sperm storage, and SIT.
机译:雌性多次交配,即一妻多夫制,在昆虫中很常见,包括果蝇。交配的雌性昆虫通常储存多个雄性的精子。不同男性的精子如何为父子关系做出贡献是性选择的一个重要因素。昆士兰果蝇 (Qfly) 的性行为和繁殖 Bactrocera tryoni 已被广泛研究,既涉及了解这一具有重要经济意义的物种的生殖生物学,也涉及对昆虫不育技术 (SIT) 的影响,即释放不育苍蝇以限制害虫种群的繁殖。尽管对 Qfly 的交配前和交配后的性选择进行了大量研究,但还没有对多雄雌性 Qflies 的亲子关系模式进行直接研究。我们使用两条形态学上可区分的细胞系来研究Qfly中精子的使用模式。两系系表现出相当的交配性能,表现为相似的交配频率、交配持续时间和互交之间的二交父子关系比例(P2)。精子使用机制,在第二次交配后立即接近 0.5,然后随着雌性年龄的增长 P2 逐渐减少,与精子的分层或重新定位最一致。将本研究中观察到的模式与其他tephritid果蝇的可用信息进行了比较,并讨论了与该物种的生殖生物学,已知的精子储存模式和SIT的关系。

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