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应激环境诱导新的表型变异:普遍入侵物种精子表现的层次反应规范。

Stressful environments induce novel phenotypic variation: hierarchical reaction norms for sperm performance of a pervasive invader.

机构信息

Fish Evolutionary Ecology Research Group, Departments of Biology & Ocean Sciences, Memorial University St. John's, Newfoundland and Labrador, Canada.

出版信息

Ecol Evol. 2012 Oct;2(10):2567-76. doi: 10.1002/ece3.364. Epub 2012 Sep 13.

Abstract

Genetic variation for phenotypic plasticity is ubiquitous and important. However, the scale of such variation including the relative variability present in reaction norms among different hierarchies of biological organization (e.g., individuals, populations, and closely related species) is unknown. Complicating interpretation is a trade-off in environmental scale. As plasticity can only be inferred over the range of environments tested, experiments focusing on fine tuned responses to normal or benign conditions may miss cryptic phenotypic variation expressed under novel or stressful environments. Here, we sought to discern the presence and shape of plasticity in the performance of brown trout sperm as a function of optimal to extremely stressful river pH, and demarcate if the reaction norm varies among genotypes. Our overarching goal was to determine if deteriorating environmental quality increases expressed variation among individuals. A more applied aim was to ascertain whether maintaining sperm performance over a wide pH range could help explain how brown trout are able to invade diverse river systems when transplanted outside of their native range. Individuals differed in their reaction norms of phenotypic expression of an important trait in response to environmental change. Cryptic variation was revealed under stressful conditions, evidenced through increasing among-individual variability. Importantly, data on population averages masked this variability in plasticity. In addition, canalized reaction norms in sperm swimming velocities of many individuals over a very large range in water chemistry may help explain why brown trout are able to colonize a wide variety of habitats.

摘要

遗传变异是表型可塑性普遍存在且重要的。然而,这种变异的规模包括在不同生物组织层次(如个体、种群和密切相关的物种)之间的反应规范中存在的相对可变性是未知的。使解释变得复杂的是环境规模的权衡。由于可塑性只能在测试的环境范围内推断,因此专注于对正常或良性条件进行微调反应的实验可能会错过在新环境或应激环境下表达的隐性表型变异。在这里,我们试图确定作为最优到极应激河流 pH 的函数的棕色鳟鱼精子性能中的可塑性的存在和形状,并确定反应规范是否在基因型之间变化。我们的总体目标是确定恶化的环境质量是否会增加个体之间表达的变异。一个更实际的目标是确定是否能够保持精子在广泛的 pH 范围内的性能,这可以帮助解释为什么棕色鳟鱼能够在其原生范围之外移植到不同的河流系统中。个体在对环境变化的重要性状的表型表达的反应规范中存在差异。在应激条件下揭示了隐性变异,这通过个体间变异性的增加得到证明。重要的是,关于种群平均值的数据掩盖了这种可塑性的变异性。此外,许多个体在水化学的很大范围内游泳速度的 canalized 反应规范可能有助于解释为什么棕色鳟鱼能够在各种不同的栖息地中定植。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f20/3492782/7d3202070c62/ece30002-2567-f1.jpg

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