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Energetic asymmetry connected with energy flow changes in response to eutrophication: a study of multiple fish species in subtropical shallow lakes

机译:促进富营养化的能量流动变化有能量不对称:亚热带浅湖中多种鱼类的研究

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Energy flow is a central characteristic in all ecosystems, and it has attracted considerable scientific attention due to its significant effects on the stability of food webs. Lake ecosystems that undergo regime shifts (clear water phase, phytoplankton dominated changed into turbid water, macrophytes dominated or vice versa) are characterized by a series of transformation in trophic structure. Although previous studies have mainly focused on the causes and consequences of regime shifts in shallow lakes, studies about responses of energy flow changes to regime shifts is far from complete. In this paper, we estimated trophic position and benthivory (i.e. degree of benthivory) of seventeen fish species from seven shallow lakes. Our data show that the trophic position and benthivory of fish species in clear water phase are significantly higher than in turbid water. This finding might help spark some ideas for subtropical lake eutrophication treatment.
机译:能量流是所有生态系统中的中心特征,由于其对食品网的稳定性的显着影响,它引起了相当大的科学关注。 经过政权换档的湖泊生态系统(清除水相,浮游植物改变成浑浊水,主导地位或反之亦然)的特征在于营养结构中的一系列转化。 虽然以前的研究主要集中在浅湖中政权变化的原因和后果,但关于能量流动变化对政权转变的反应的研究远非完整。 在本文中,我们从七个浅湖中估计了17种鱼类的营养潜力位置和嗜热性(即枯萎程度)。 我们的数据表明,透明水相中鱼类的营养位置和精神潜力显着高于浑浊水中。 这一发现可能有助于引发亚热带湖富营养化治疗的一些想法。

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