Gutiérrez Yeisson, Fresch Marion, Ott David, Brockmeyer Jens, Scherber Christoph
Institute of Landscape Ecology, University of Münster, 48149 Münster, Germany.
Institute for Biochemistry and Technical Biochemistry, University of Stuttgart, 70569 Stuttgart, Germany.
R Soc Open Sci. 2020 Apr 22;7(4):200100. doi: 10.1098/rsos.200100. eCollection 2020 Apr.
Nutrition is the single most important factor for individual's growth and reproduction. Consequently, the inability to reach the nutritional optimum imposes severe consequences for animal fitness. Yet, under natural conditions, organisms may face a mixture of stressors that can modulate the effects of nutritional asymmetry. For instance, stressful environments caused by intense interaction with conspecifics. Here, we subjected the house cricket to (i) either of two types of diet that have proved to affect cricket performance and (ii) simultaneously manipulated their social environment throughout their complete life cycle. We aimed to track sex-specific consequences for multiple traits during insect development throughout all life stages. Both factors affected critical life-history traits with potential population-level consequences: diet composition induced strong effects on insect development time, lifespan and fitness, while the social environment affected the number of nymphs that completed development, food consumption and whole-body lipid content. Additionally, both factors interactively determined female body mass. Our results highlight that insects may acquire and invest resources in a different manner when subjected to an intense interaction with conspecifics or when isolated. Furthermore, while only diet composition affected individual reproductive output, the social environment would determine the number of reproductive females, thus indirectly influencing population performance.
营养是个体生长和繁殖的最重要单一因素。因此,无法达到最佳营养状态会对动物健康造成严重后果。然而,在自然条件下,生物体可能会面临多种应激源,这些应激源会调节营养不对称的影响。例如,与同种个体的强烈相互作用所导致的应激环境。在这里,我们让家蟋蟀(i)食用两种已被证明会影响蟋蟀表现的食物中的一种,(ii)并在其整个生命周期中同时操纵它们的社会环境。我们旨在追踪昆虫发育全过程中多个性状的性别特异性后果。这两个因素都影响了关键的生活史性状,并可能对种群水平产生影响:食物组成对昆虫发育时间、寿命和健康有强烈影响,而社会环境则影响完成发育的若虫数量、食物消耗和全身脂质含量。此外,这两个因素相互作用决定了雌虫的体重。我们的结果表明,昆虫在与同种个体强烈相互作用或隔离时,可能会以不同的方式获取和投入资源。此外,虽然只有食物组成会影响个体的繁殖产出,但社会环境会决定繁殖雌虫的数量,从而间接影响种群表现。