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Hypothesized kinetic models for describing the growth of globular and encrusting demosponges

机译:假想的动力学模型,用于描述球状和包壳的蠕虫的生长

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摘要

The marine sponges Dysidea avara and Chondrosia reniformis (globular forms) were cultured in the laboratory on a diet of viable Phaeodactylum tricornutum cells and dissolved nutrients (algae and fish powders). Our growth data were combined with literature data for Pseudosuberites andrewsi (a globular sponge) and for the encrusting sponges Oscarella lobularis, Hemimycale columella, and Crambe crambe. The suitability of three growth models-linear, exponential, and radial accretive-for describing the growth of globular and encrusting sponges was assessed. Radial accretive growth was determined to be the best model to describe growth of both encrusting and globular sponges. Average growth rates of 0.051+/-0.016 and 0.019+/-0.003 mm/day (calculated as the increase of the radius of the sponge per day) were obtained experimentally for D. avara and C. reniformis, respectively.
机译:海洋海绵Dysidea avara和肾形软骨(球状)在实验室中以有活力的三角藻细胞和溶解的营养物质(藻类和鱼粉)为食进行培养。我们的生长数据与Pseudosuberites andrewsi(球形海绵)以及包裹海绵的Oscarella lobularis,Hemimycale columella和Crambe crambe的文献数据相结合。评估了三种增长模型(线性,指数和径向增生模型)用于描述球形和包壳海绵的增长的适用性。径向增生被确定为描述包壳和球形海绵生长的最佳模型。通过实验分别获得了D. avara和C. reniformis的平均生长速率,分别为0.051 +/- 0.016和0.019 +/- 0.003 mm / day(以每天增加的海绵半径计算)。

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