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Increases of Chamber Height and Base Diameter Have Contrasting Effects on Grazing Rate of Two Cladoceran Species: Implications for Microcosm Studies

机译:箱高和底径的增加对两种枝角类物种的放牧率产生相反的影响:对微观研究的意义

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摘要

Aquatic microcosm studies often increase either chamber height or base diameter (to increase water volume) to test spatial ecology theories such as “scale” effects on ecological processes, but it is unclear whether the increase of chamber height or base diameter have the same effect on the processes, i.e., whether the effect of the shape of three-dimensional spaces is significant. We orthogonally manipulated chamber height and base diameter and determined swimming activity, average swimming velocity and grazing rates of the cladocerans Daphnia magna and Moina micrura (on two algae Scenedesmus quadricauda and Chlorella vulgaris; leading to four aquatic algae-cladoceran systems in total) under different microcosm conditions. Across all the four aquatic systems, increasing chamber height at a given base diameter significantly decreased the duration and velocity of horizontal swimming, and it tended to increase the duration but decrease the velocity of vertical swimming. These collectively led to decreases in both average swimming velocity and grazing rate of the cladocerans in the tall chambers (at a given base diameter), in accordance with the positive relationship between average swimming velocity and grazing rate. In contrast, an increase of base diameter at a given chamber height showed contrasting effects on the above parameters. Consistently, at a given chamber volume increasing ratio of chamber height to base diameter decreased the average swimming velocity and grazing rate across all the aquatic systems. In general, increasing chamber depth and base diameter may exert contrasting effects on zooplankton behavior and thus phytoplankton-zooplankton interactions. We suggest that spatial shape plays an important role in determining ecological process and thus should be considered in a theoretical framework of spatial ecology and also the physical setting of aquatic microcosm experiments.
机译:水生微观研究通常会增加水箱的高度或增加底径(以增加水量),以测试空间生态学理论,例如对生态过程的“规模”效应,但目前尚不清楚增加水箱的高度或底径对水的影响是否相同。过程,即三维空间形状的影响是否显着。我们正交操纵室的高度和基部直径,并确定不同条件下锁骨ado(Daphnia magna)和微藻(Moina micrura)(在两个藻类Scendesmus quadricauda和小球藻(Chlorella vulgaris)上的游泳活动,平均游泳速度和放牧率;总共形成四个水生藻类-锁生藻类系统)缩影条件。在所有四个水生系统中,在给定的基本直径下增加水箱高度会显着降低水平游泳的持续时间和速度,并且倾向于增加持续时间,但会降低垂直游泳的速度。根据平均游泳速度和放牧率之间的正相关关系,这些共同导致高腔室中锁骨的平均游泳速度和放牧率的下降(在给定的基本直径下)。相比之下,在给定的腔室高度处增加基本直径对上述参数显示出相反的效果。一致地,在给定的腔室容积下,腔室高度与基本直径的比值增加会降低所有水生系统的平均游泳速度和放牧率。通常,增加腔室深度和底径可能对浮游动物的行为以及浮游植物-浮游动物的相互作用产生相反的影响。我们建议,空间形状在决定生态过程中起着重要作用,因此应在空间生态学理论框架以及水生微观实验的物理环境中加以考虑。

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