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Effects of Submerged Vegetation on Water Clarity Across Climates

机译:淹没植被对整个气候中水质清晰度的影响

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A positive feedback between submerged vegetation and water clarity forms the backbone of the alternative state theory in shallow lakes. The water clearing effect of aquatic vegetation may be caused by different physical, chemical, and biological mechanisms and has been studied mainly in temperate lakes. Recent work suggests differences in biotic interactions between (sub)tropical and cooler lakes might result in a less pronounced clearing effect in the (sub)tropics. To assess whether the effect of submerged vegetation changes with climate, we sampled 83 lakes over a gradient ranging from the tundra to the tropics in South America. Judged from a comparison of water clarity inside and outside vegetation beds, the vegetation appeared to have a similar positive effect on the water clarity across all climatic regions studied. However, the local clearing effect of vegetation decreased steeply with the contribution of humic substances to the underwater light attenuation. Looking at turbidity on a whole-lake scale, results were more difficult to interpret. Although lakes with abundant vegetation (>30%) were generally clear, sparsely vegetated lakes differed widely in clarity. Overall, the effect of vegetation on water clarity in our lakes appears to be smaller than that found in various Northern hemisphere studies. This might be explained by differences in fish communities and their relation to vegetation. For instance, unlike in Northern hemisphere studies, we find no clear relation between vegetation coverage and fish abundance or their diet preference. High densities of omnivorous fish and coinciding low grazing pressures on phytoplankton in the (sub)tropics may, furthermore, weaken the effect of vegetation on water clarity.
机译:淹没的植被和水的净度之间的正反馈构成了浅湖中替代状态理论的基础。水生植物的清水作用可能是由不同的物理,化学和生物机制引起的,并且主要在温带湖泊中进行了研究。最近的工作表明,(亚)热带湖和较凉湖之间生物相互作用的差异可能导致(亚)热带的清除作用减弱。为了评估淹没植被的影响是否随气候变化,我们从南美洲的苔原到热带地区,对83个湖泊进行了采样。根据对植被床内外水透明度的比较判断,在所有研究的气候区域,植被似乎对水透明度具有类似的积极影响。然而,随着腐殖质对水下光衰减的贡献,植被的局部清除作用急剧下降。从整个湖水的浊度来看,结果更难以解释。尽管植被丰富的湖泊(> 30%)通常是清澈的,但植被稀疏的湖泊在清晰度方面差异很大。总体而言,植被对我们湖泊中水的清晰度的影响似乎小于北半球各种研究的结果。鱼类群落的差异及其与植被的关系可以解释这一点。例如,与北半球的研究不同,我们没有发现植被覆盖率与鱼类丰度或其饮食偏好之间的明确关系。高杂食性鱼类的密度和(亚)热带地区浮游植物的低放牧压力同时发生,可能会削弱植被对水的透明度的影响。

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