雄性社会性昆虫的生理权衡:蜜蜂雄蜂的感染、免疫、繁殖力、体型和年龄之间的相互作用。

IF 2.3 2区 农林科学 Q1 ENTOMOLOGY Journal of insect physiology Pub Date : 2024-11-05 DOI:10.1016/j.jinsphys.2024.104720
Bradley N Metz, Tatiana Molina-Marciales, Micheline K Strand, Olav Rueppell, David R Tarpy, Esmaeil Amiri
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引用次数: 0

摘要

雌性社会性昆虫是进化过程中保留下来的生殖与寿命之间生理权衡的一个显著特例,在这种情况下,衰老与生殖呈正相关。然而,雄性社会性昆虫的生命史是否也有这一特点,这在很大程度上仍然是个未知数。雄性蜜蜂(雄蜂)在交配过程中死亡,使它们处于对立的选择压力之下。在个体层面上,雄蜂之间会为一次成功的交配尝试而展开竞争,从而导致有利于雄蜂体能提高的选择性压力。蜜蜂无人蜂是单倍体个体,与二倍体雌蜂相比,其基因组中缺乏等位基因变异。我们假设,这种遗传限制可能会导致蜜蜂雄蜂在病理压力和体能特征之间进行权衡。在我们的研究中,我们观察到了老龄和年轻雄蜂在体型和繁殖力方面的差异,以及几种地方性病毒和转录免疫反应的压力。我们发现,尽管有证据表明免疫表达偏离了既定机制,但感染似乎并不会降低老龄雄蜂的繁殖力。与我们的预期相反,无人机在体型和繁殖力之间似乎也没有表现出生理上的权衡。这些发现表明,不同体型的无人机可能具有不同的交配质量,而质量较高的无人机可能更倾向于保持生殖能力而非免疫功能。
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Physiological trade-offs in male social insects: Interactions among infection, immunity, fertility, size, and age in honey bee drones.

Female social insects represent a dramatic exception of the evolutionarily conserved physiological trade-off between reproduction and life span, where aging is positively correlated with reproduction. However, whether this facet of life history also pertains to male social insects, remains largely unknown. Male honey bees (drones) die in the act of copulation, placing them under opposing selective pressures. At the individual level, there is inter-male competition for a single successful mating attempt, leading to selective pressure that favors an increase in male fitness. Honey bee drones are haploid individuals and lack the allelic variation in their genome compared to diploid females. We hypothesized that this genetic limitation may result in trade-offs between pathological stress and fitness traits in honey bee males. In our study, we observed differences in size and fertility measures in old and young drones along with stressors of several endemic viruses and the transcriptional immune response. We found that infection does not appear to decrease fertility in old drones, despite evidence for a shift in immune expression away from established mechanisms. Contrary to our expectations, drones additionally do not appear to exhibit a physiological trade-off between size and fertility. These findings demonstrate that drones of different size are likely of different mating quality and that higher quality drones likely favor retaining reproductive output over immune function.

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来源期刊
Journal of insect physiology
Journal of insect physiology 生物-昆虫学
CiteScore
4.50
自引率
4.50%
发文量
77
审稿时长
57 days
期刊介绍: All aspects of insect physiology are published in this journal which will also accept papers on the physiology of other arthropods, if the referees consider the work to be of general interest. The coverage includes endocrinology (in relation to moulting, reproduction and metabolism), pheromones, neurobiology (cellular, integrative and developmental), physiological pharmacology, nutrition (food selection, digestion and absorption), homeostasis, excretion, reproduction and behaviour. Papers covering functional genomics and molecular approaches to physiological problems will also be included. Communications on structure and applied entomology can be published if the subject matter has an explicit bearing on the physiology of arthropods. Review articles and novel method papers are also welcomed.
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