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Biogeographical Survey Identifies Consistent Alternative Physiological Optima and a Minor Role for Environmental Drivers in Maintaining a Polymorphism

机译:生物地理调查确定一致的替代生理最佳状态,以及环境驱动程序在维持多态性方面的次要作用

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摘要

The contribution of adaptive mechanisms in maintaining genetic polymorphisms is still debated in many systems. To understand the contribution of selective factors in maintaining polymorphism, we investigated large-scale (>1000 km) geographic variation in morph frequencies and fitness-related physiological traits in the damselfly Nehalennia irene. As fitness-related physiological traits, we investigated investment in immune function (phenoloxidase activity), energy storage and fecundity (abdomen protein and lipid content), and flight muscles (thorax protein content). In the first part of the study, our aim was to identify selective agents maintaining the large-scale spatial variation in morph frequencies. Morph frequencies varied considerably among populations, but, in contrast to expectation, in a geographically unstructured way. Furthermore, frequencies co-varied only weakly with the numerous investigated ecological parameters. This suggests that spatial frequency patterns are driven by stochastic processes, or alternatively, are consequence of highly variable and currently unidentified ecological conditions. In line with this, the investigated ecological parameters did not affect the fitness-related physiological traits differently in both morphs. In the second part of the study, we aimed at identifying tradeoffs between fitness-related physiological traits that may contribute to the local maintenance of both colour morphs by defining alternative phenotypic optima, and test the spatial consistency of such trade-off patterns. The female morph with higher levels of phenoloxidase activity had a lower thorax protein content, and vice versa, suggesting a trade-off between investments in immune function and in flight muscles. This physiological trade-off was consistent across the geographical scale studied and supports widespread correlational selection, possibly driven by male harassment, favouring alternative trait combinations in both female morphs.
机译:在许多系统中,自适应机制在维持遗传多态性方面的作用仍然存在争议。为了了解选择因子在维持多态性中的作用,我们调查了豆娘Nehalennia irene的形态频率和适应性相关生理特征的大规模(> 1000 km)地理变异。作为与健身相关的生理特征,我们调查了对免疫功能(酚氧化酶活性),能量存储和繁殖力(腹部蛋白质和脂质含量)以及飞行肌肉(胸部蛋白质含量)的投资。在研究的第一部分中,我们的目标是确定维持形态频率上大规模空间变化的选择剂。种群之间的变体频率差异很大,但与预期相反,其地理分布不规则。此外,频率与许多研究的生态参数之间的变化很小。这表明空间频率模式是由随机过程驱动的,或者是高度可变且目前尚未确定的生态条件的结果。因此,研究的生态参数对两种形态的健身相关生理特性没有不同的影响。在研究的第二部分中,我们旨在通过定义替代的表型最佳值来确定与健身相关的生理特征之间的权衡,这些权衡可能有助于两种颜色形态的局部维持,并测试这种权衡模式的空间一致性。具有较高酚氧化酶活性水平的雌性变体具有较低的胸部蛋白质含量,反之亦然,这表明在免疫功能和飞行肌肉的投资之间要进行权衡。这种生理上的权衡在所研究的地理范围内是一致的,并支持广泛的相关选择,这可能是由男性骚扰驱动的,有利于两个女性形态的替代性状组合。

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