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Decrease of population divergence in Eurasian perch (Perca fluviatilis) in browning waters : role of fatty acids and foraging efficiency

机译:褐化水中欧亚鲈鱼(Perca fluviatilis)种群差异的减少:脂肪酸的作用和觅食效率

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摘要

Due to altered biogeochemical processes related to climate change, highly colored dissolved organic carbon (DOC) from terrestrial sources will lead to a water "brownification" in many freshwater systems of the Northern Hemisphere. This will create deteriorated visual conditions that have been found to affect habitat-specific morphological variations in Eurasian perch (Perca fluviatilis) in a previous study. So far, potential drivers and ultimate causes of these findings have not been identified. We conducted a field study to investigate the connection between morphological divergence and polyunsaturated fatty acid (PUFA) composition of perch from six lakes across a gradient of DOC concentration. We expected a decrease in the prevalence of PUFAs, which are important for perch growth and divergence with increasing DOC concentrations, due to the restructuring effects of DOC on aquatic food webs. In general, rate of morphological divergence in perch decreased with increasing DOC concentrations. Proportions of specific PUFAs (22:6n-3, 18:3n-3, 20:5n-3, and 20:4n-6) identified to primarily contribute to overall differences between perch caught in clear and brown-water lakes tended to be connected to overall decline of morphological divergence. However, no overall significant relationship was found, indicating no severe limitation of essential fatty acids for perch inhabiting brown water lakes. We further broaden our approach by conducting a laboratory experiment on foraging efficiency of perch. Therefore, we induced pelagic and littoral phenotypes by differences in habitat-structure and feeding mode and recorded attack rate in a feeding experiment. Generally, fish were less efficient in foraging on littoral prey (Ephemeroptera) when visual conditions were degraded by brown water color. We concluded that browning water may have a strong effect on the forager's ability to find particular food resources, resulting in the reduced development of evolutionary traits, such as habitat-specific morphological divergence.
机译:由于与气候变化有关的生物地球化学过程发生了变化,来自陆源的高度着色的溶解有机碳(DOC)将导致北半球许多淡水系统中的水“褐化”。在先前的研究中,这将造成视觉条件的恶化,这些视觉条件已被发现会影响欧亚鲈鱼(Perca fluviatilis)中特定于栖息地的形态变化。到目前为止,尚未发现这些发现的潜在驱动因素和最终原因。我们进行了一项野外研究,以研究形态多样性与六种湖泊中DOC浓度梯度上的鲈鱼的多不饱和脂肪酸(PUFA)组成之间的联系。我们预计,由于DOC对水生食物网的重组作用,PUFA的流行率将下降,这对于随着DOC浓度增加而对鲈鱼的生长和发散起重要作用。通常,随着DOC浓度的增加,鲈鱼的形态发散率降低。特定PUFA(22:6n-3、18:3n-3、20:5n-3和20:4n-6)的比例主要是导致清澈湖水和棕色水湖中栖息的鲈鱼之间总体差异的主要原因与形态差异的整体下降有关。但是,没有发现总体上的显着关系,表明栖息在棕色水域湖泊中的必需脂肪酸没有受到严重限制。我们通过对鲈鱼的觅食效率进行实验室实验来进一步扩展我们的方法。因此,我们通过生境结构和摄食模式的差异以及进食实验中记录的侵袭率来诱导中上层和滨海表型。通常,当视觉条件因棕色水色而退化时,鱼类在沿海猎物(星翅目)上觅食的效率较低。我们得出的结论是,使水变成褐色可能会对觅食者寻找特定食物资源的能力产生重大影响,从而导致进化特征(例如栖息地特定的形态差异)的发展减少。

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