School of Biology, University of St Andrews, St Andrews KY16 9TH, United Kingdom.
Centre of Excellence in Biological Interactions, Department of Biosciences, University of Helsinki, FI-00014 Helsinki, Finland.
Evolution. 2018 Jan;72(1):30-38. doi: 10.1111/evo.13399. Epub 2017 Dec 12.
In haplodiploids, females can produce sons from unfertilized eggs without mating. However, virgin reproduction is usually considered to be a result of a failure to mate, rather than an adaptation. Here, we build an analytical model for evolution of virgin reproduction, sex-allocation, and altruistic female helping in haplodiploid taxa. We show that when mating is costly (e.g., when mating increases predation risk), virginity can evolve as an adaptive female reproductive strategy. Furthermore, adaptive virginity results in strongly divergent sex-ratios in mated and virgin queen nests ("split sex ratios"), which promotes the evolution of altruistic helping by daughters in mated queen nests. However, when helpers evolve to be efficient and increase nest production significantly, virgin reproduction is selected against. Our results suggest that adaptive virginity could have been an important stepping stone on the pathway to eusociality in haplodiploids. We further show that virginity can be an adaptive reproductive strategy also in primitively social haplodiploids if workers bias the sex ratio toward females. By remaining virgin, queens are free to produce sons, the more valuable sex in a female-biased population. Our work brings a new dimension to the studies linking reproductive strategies with social evolution.
在单倍二倍体生物中,雌性可以在未经交配的情况下通过未受精卵产生雄性后代。然而,处女生殖通常被认为是交配失败的结果,而不是一种适应。在这里,我们建立了一个分析模型,用于研究单倍二倍体生物中的处女生殖、性分配和利他性雌性帮助的进化。我们表明,当交配成本较高(例如,交配增加被捕食的风险)时,处女生殖可以作为一种适应性的雌性生殖策略进化。此外,适应性的处女生殖会导致交配和处女蜂王巢中性别比例的强烈分歧(“分裂性别比例”),这促进了交配蜂王巢中女儿利他性帮助的进化。然而,当助手进化为高效并显著增加巢穴产量时,处女生殖就会被选择淘汰。我们的研究结果表明,适应性的处女生殖可能是单倍二倍体向社会性进化的重要垫脚石。我们进一步表明,如果工蜂偏向雌性来影响性别比例,那么处女生殖在原始社会性的单倍二倍体生物中也可以是一种适应性的生殖策略。通过保持处女状态,蜂王可以自由地产生雄性后代,这在雌性偏向的种群中是更有价值的性别。我们的工作为将生殖策略与社会进化联系起来的研究带来了新的维度。