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Surprising spatiotemporal stability of a multi‐peak fitness landscape revealed by independent field experiments measuring hybrid fitness

机译:独立现场实验令人惊讶的时空稳定性通过独立现场实验揭示了测量混合体健身

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摘要

The effect of the environment on fitness in natural populations is a fundamental question in evolutionary biology. However, experimental manipulations of both environment and phenotype at the same time are rare. Thus, the relative importance of the competitive environment versus intrinsic organismal performance in shaping the location, height, and fluidity of fitness peaks and valleys remains largely unknown. Here, we experimentally tested the effect of competitor frequency on the complex fitness landscape driving adaptive radiation of a generalist and two trophic specialist pupfishes, a scale‐eater and molluscivore, endemic to hypersaline lakes on San Salvador Island (SSI), Bahamas. We manipulated phenotypes, by generating 3407 F4/F5 lab‐reared hybrids, and competitive environment, by altering the frequency of rare transgressive hybrids between field enclosures in two independent lake populations. We then tracked hybrid survival and growth rates across these four field enclosures for 3–11 months. In contrast to competitive speciation theory, we found no evidence that the frequency of hybrid phenotypes affected their survival. Instead, we observed a strikingly similar fitness landscape to a previous independent field experiment, each supporting multiple fitness peaks for generalist and molluscivore phenotypes and a large fitness valley isolating the divergent scale‐eater phenotype. These features of the fitness landscape were stable across manipulated competitive environments, multivariate trait axes, and spatiotemporal heterogeneity. We suggest that absolute performance constraints and divergent gene regulatory networks shape macroevolutionary (interspecific) fitness landscapes in addition to microevolutionary (intraspecific) competitive dynamics. This interplay between organism and environment underlies static and dynamic features of the adaptive landscape.
机译:环境对自然群体的健身的影响是进化生物学的基本问题。然而,同时对环境和表型的实验性操纵是罕见的。因此,竞争环境对塑造了健身峰和山谷的位置,高度和流动性在塑造了固有的有机体性能的相对重要性仍然很大程度上是未知的。在这里,我们通过实验测试了竞争对手对竞争对手景观的复杂健身景观的效果,以及两个营养师专家幼鱼,尺度 - 食物和软体动物,在圣萨尔瓦多岛(SSI),巴哈马的休闲湖。我们通过在两个独立湖泊人群中改变野外围栏之间的罕见越侵袭混合动力车频率来制衡表型,通过产生3407 F4 / F5实验室饲养的混合动力和竞争环境。然后,我们在这四个场地围绕这四个野外围栏追踪混合生存和增长率3-11个月。与竞争性的形态理论相比,我们发现没有证据表明杂交表型的频率影响了它们的存活。相反,我们观察到以前的独立场实验中的一个惊人的相似性景观,每个实地实验都是支持通用和软体动物成像型的多个健身峰,以及隔离发散量子熟食表型的大型健身谷。健身景观的这些特征在操纵的竞争环境中稳定,多变量特质轴和时空异质性。我们建议除了微型竞争性动态之外,绝对性能约束和不同的基因监管网络还形成宏观调整(间隙)健身景观。生物和环境之间的这种相互作用是自适应景观的静态和动态特征。

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