Controlled and polygynous mating in the black soldier fly: advancing breeding programs through quantitative genetic designs

Kim Jensen, Sarah Fogh Thormose, Natasja Krog Noer, Toke Munk Schou, Morten Kargo, Anton Gligorescu, Jan Vaerum Noergaard, Laura Skrubbeltrang Hansen, Roos Marina Zaalberg, Hanne Marie Nielsen, Torsten Nygaard Kristensen
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Abstract

In animal breeding programs, utilizing quantitative genetic designs such as the full-/half-sibling design is fundamental. A full-/half-sibling design demands that mating can be controlled, and individuals can be tracked for the construction of a pedigree. In nature, black soldier fly (Hermetia illucens L.) males are reported to gather in lekking groups to engage in competitive displays and courtship rituals before mating. This lekking behavior is described as crucial for establishing suitable conditions and achieving successful mating, and polygyny is therefore assumed to be rare. We show that when exposing a virgin male to a virgin female, they readily mate, demonstrating the ability to mate without prior lekking and that it is possible to mate selected pairs. Furthermore, we show that successful mating can be achieved between an individual male and at least four virgin females within a four-hour time span, and that nearly all matings result in live offspring. Our findings pave the way for moving H. illucens breeding programs beyond mass selection towards advanced selective breeding designs demanding controlled mating. Such designs enable selection for multiple traits simultaneously, are used to prevent inbreeding, and can drastically increase rates of selection responses compared to mass selection.
黑兵蝇的受控交配和多雌交配:通过定量遗传设计推进育种计划
在动物育种计划中,利用全同胞/半同胞设计等定量遗传设计至关重要。全同胞/半同胞设计要求能控制交配,并能跟踪个体以构建血统。据报道,在自然界中,黑色兵蝇(Hermetia illucens L.)的雄蝇会在交配前聚集成群,进行竞争性表演和求偶仪式。据描述,这种lekking行为对于建立合适的条件和实现成功交配至关重要,因此多配偶行为被认为是罕见的。我们的研究表明,当处子雄性与处子雌性接触时,它们很容易交配,这表明它们有能力在不进行跳跃的情况下交配,而且有可能交配出经过选择的配对。此外,我们还发现,在四小时的时间跨度内,一只雄性个体与至少四只处子雌性个体可以成功交配,而且几乎所有交配都能产生活的后代。我们的研究结果为H. illucens育种项目从大规模选育转向需要控制交配的先进选择性育种设计铺平了道路。与大规模选择相比,这种设计能同时对多个性状进行选择,用于防止近亲繁殖,并能大幅提高选择反应率。
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