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首页> 外文期刊>Ecology and Evolution >Interactive effect of warming, nitrogen and phosphorus limitation on phytoplankton cell size
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Interactive effect of warming, nitrogen and phosphorus limitation on phytoplankton cell size

机译:升温,氮和磷限制对浮游植物细胞大小的相互作用

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AbstractCell size is one of the ecologically most important traits of phytoplankton. The cell size variation is frequently related to temperature and nutrient limitation. In order to disentangle the role of both factors, an experiment was conducted to determine the possible interactions of these factors. Baltic Sea water containing the natural plankton community was used. We performed a factorial combined experiment of temperature, type of nutrient limitation (N vs. P), and strength of nutrient limitation. The type of nutrient limitation was manipulated by altering the N:P ratio of the medium (balanced, N and P limitation) and strength by the dilution rate (0% and 50%) of the semicontinuous cultures. The negative effect of temperature on cell size was strongest under N limitation, intermediate under P limitation, and weakest when N and P were supplied at balanced ratios. However, temperature also influenced the intensity of nutrient imitation, because at higher temperature there was a tendency for dissolved nutrient concentrations to be lower, while the C:N or C:P ratio being higher…higher at identical dilution rates and medium composition. Analyzing the response of cell size to C:N ratios (as index of N limitation) and C:P ratios (as index of P limitation) indicated a clear dominance of the nutrient effect over the direct temperature effect, although the temperature effect was also significant.
机译:摘要细胞大小是浮游植物在生态上最重要的特征之一。细胞大小的变化通常与温度和营养限制有关。为了弄清这两个因素的作用,进行了一项实验以确定这些因素可能的相互作用。使用了包含天然浮游生物群落的波罗的海水。我们进行了温度,养分限制类型(N vs. P)和养分限制强度的阶乘组合实验。通过改变培养基的N:P比(平衡,N和P限制)和强度(通过半连续培养物的稀释率(0%和50%))来控制营养限制的类型。温度对细胞大小的负面影响在N限制下最强,在P限制下中等,而当N和P以平衡比例供应时最弱。然而,温度也会影响营养素的模仿强度,因为在较高的温度下,溶解的营养素浓度有降低的趋势,而C:N或C:P的比例则更高……在相同的稀释率和培养基组成下更高。分析细胞大小对C:N比(作为N限制的指标)和C:P比(作为P限制的指标)的响应表明,尽管温度影响也是直接作用,但营养作用明显优于直接温度作用重大。

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