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About the interest of a zooplankton compartment in pond systems: methodology to study the growth kinetic of Daphnia pulex on Scenedesmus sp.

机译:关于池塘系统中浮游动物隔室的兴趣:研究水蚤在Scenedesmus sp。上生长动力学的方法。

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A reliable characterization of cladocerans' growth kinetic on their substrates is crucial for the estimation of their biochemical conversion rate in pond models. Although many studies reported cladocerans' growth inhibitions by high chlorophyceae contents, their growth kinetics had continued to be described in many pond system models by Monod-type kinetic, which describes growth saturation by high substrate contents, but fails to explain the disappearance of cladocerans observed during chlorophyceae's bloom periods. This study aimed to develop a methodology and assess whether growth-inhibition-type models used to describe microbial growth kinetics can be applicable to cladocerans. Experiments were carried out using Daphnia pulex populations and Scenedesmus sp. First, biomass of D. pulex was measured through digital image processing (DIP) during growth experiments. Then, three candidate models (i.e., Andrews, Edward and Haldane models), along with the Monod model, were fitted to the observed data and compared. The results showed that the DIP technique provided reliable results for estimating the biomass of D. pulex. Our findings show that the candidate growth inhibition-type models satisfactorily described D. pulex's growth kinetic (86% variance accounted for). Scenesdemus sp. were not strong inhibitors of the growth of D. pulex (high inhibition constant and low half-saturation constant found).
机译:锁骨菜在其底物上生长动力学的可靠表征对于在池塘模型中估算其生化转化率至关重要。尽管许多研究报告了高叶绿藻含量对枝角类动物的生长抑制作用,但在许多池塘系统模型中,Monod型动力学仍继续描述了它们的生长动力学,该模型通过高底物含量描述了生长饱和,但不能解释观察到的枝角类动物的消失。在叶绿藻的开花期。这项研究旨在开发一种方法,并评估用于描述微生物生长动力学的生长抑制型模型是否可适用于锁骨。使用水蚤(Daphnia pulex)种群和Scenedesmus sp。进行了实验。首先,在生长实验过程中通过数字图像处理(DIP)测量了淡水杜鹃的生物量。然后,将三个候选模型(即Andrews,Edward和Haldane模型)与Monod模型一起拟合到观测数据并进行比较。结果表明,DIP技术为估算石生物量提供了可靠的结果。我们的发现表明,候选的生长抑制型模型令人满意地描述了D. pulex的生长动力学(占86%的方差)。 Scenesdemus sp。并不是D.pulex生长的强抑制剂(发现高抑制常数和低半饱和常数)。

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