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首页> 外文期刊>Marine ecology progress series >Modeling the effects of abiotic and biotic factors on the depth distribution of Fucus vesiculosus in the Baltic Sea
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Modeling the effects of abiotic and biotic factors on the depth distribution of Fucus vesiculosus in the Baltic Sea

机译:模拟非生物和生物因素对波罗的海海藻的深度分布的影响

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The conspicuous retreat of the key species Fucus vesiculosus from the deeper parts of its former distribution area in the Baltic Sea has triggered extensive research on the factors that control its growth. Based on recently obtained knowledge on a large number of potential drivers, we developed a numerical model incorporating effects of abiotic factors on the physiological functions of photosynthesis, respiration, and reproduction and the ecological processes of competition, grazing, and epibiosis. For all input combinations, the model delivers the monthly net growth rate near the bladder wrack's depth limit and the maximum depth of its vertical distribution. The use of data corresponding to conditions presently observed in the western Baltic Sea sets the year's maximum algal net growth rate in late spring and 2 minima in early spring and autumn. The depth limit of the wrack's distribution is set at ~9 m. Light and its absorption by phytoplankton represent by far the most important factors controlling the modeled net growth rate and depth penetration, with the role of epibiosis requiring further investigation. Lacking findings on population dynamics and biotic interactions restrict the generated model to an exploratory rather than a predictive tool.
机译:在波罗的海其主要分布区较深的主要物种Fusus vesiculosus的显着退缩引发了对控制其生长的因素的广泛研究。基于最近获得的有关大量潜在驱动因素的知识,我们开发了一个包含非生物因素对光合作用,呼吸和繁殖的生理功能以及竞争,放牧和流行病生态过程的影响的数值模型。对于所有输入组合,该模型均提供接近膀胱残骸深度极限的月度净增长率以及其垂直分布的最大深度。使用与波罗的海西部目前观察到的条件相对应的数据,可确定春季末的年度最大藻类净生长速率,春季初和秋季的2个最小值。沉船分布的深度极限设置为〜9 m。迄今为止,光及其被浮游植物的吸收代表了控制模型化净生长速率和深度渗透的最重要因素,而流行病的作用尚需进一步研究。缺乏关于种群动态和生物相互作用的发现,将所产生的模型局限于探索性而非预测性工具。

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