Department of Biology, Life Sciences Centre, Dalhousie University, 6299 South St, Halifax, NS, Canada B3H 4R2.
Zebrafish Core Facility, Dalhousie University, Halifax, Nova Scotia, Canada.
Proc Biol Sci. 2022 Sep 14;289(1982):20220751. doi: 10.1098/rspb.2022.0751. Epub 2022 Sep 7.
Human-driven increases in global mean temperatures are associated with concomitant increases in thermal variability. Yet, few studies have explored the impacts of thermal variability on fitness-related traits, limiting our ability to predict how organisms will respond to dynamic thermal changes. Among the myriad organismal responses to thermal variability, one of the most proximate to fitness-and, thus, a population's ability to persist-is reproduction. Here, we examine how a model freshwater fish () responds to diel thermal fluctuations that span the species's viable developmental range of temperatures. We specifically investigate reproductive performance metrics including spawning success, fecundity, egg provisioning and sperm concentration. Notably, we apply thermal variability treatments during two ontogenetic timepoints to disentangle the relative effects of developmental plasticity and reversible acclimation. We found evidence of direct, negative effects of thermal variability during later ontogenetic stages on reproductive performance metrics. We also found complex interactive effects of early and late-life exposure to thermal variability, with evidence of beneficial acclimation of spawning success and modification of the relationship between fecundity and egg provisioning. Our findings illuminate the plastic life-history modifications that fish may undergo as their thermal environments become increasingly variable.
人为引起的全球平均温度升高与热变异性的同时增加有关。然而,很少有研究探讨热变异性对与适应度相关特征的影响,这限制了我们预测生物体对动态热变化的反应的能力。在生物体对热变异性的无数反应中,最接近适应度的反应之一——也就是种群持续存在的能力——是繁殖。在这里,我们研究了一种模式淡水鱼()如何对跨越物种可行发育温度范围的昼夜热波动做出反应。我们特别调查了包括产卵成功率、繁殖力、卵供给和精子浓度在内的繁殖表现指标。值得注意的是,我们在两个个体发育时间点应用了热变异性处理,以区分发育可塑性和可逆驯化的相对影响。我们发现热变异性在后期个体发育阶段对繁殖表现指标有直接的负面影响。我们还发现了早期和晚期暴露于热变异性的复杂交互影响,有证据表明产卵成功率的有益驯化和繁殖力与卵供给之间关系的改变。我们的研究结果阐明了鱼类在其热环境变得越来越多变时可能经历的塑性生活史改变。