Marine Biological Research Centre, Department of Biology, University of Southern Denmark, 5300 Kerteminde, Denmark.
Department of Earth, Ocean and Atmospheric Sciences, University of British Columbia, 2039-2207 Main Mall, Vancouver, BC, Canada, V6T 1Z4.
J Exp Biol. 2024 Apr 15;227(8). doi: 10.1242/jeb.247132. Epub 2024 Apr 17.
Filter-feeding demosponges are modular organisms that consist of modules each with one water-exit osculum. Once a mature module has been formed, the weight-specific filtration and respiration rates do not change. Sponge modules only grow to a certain size and for a sponge to increase in size, new modules must be formed. However, the growth characteristics of a small single-osculum module sponge are fundamentally different from those of multi-modular sponges, and a theoretically derived volume-specific filtration rate scales as F/V=V-1/3, indicating a decrease with increasing total module volume (V, cm3). Here, we studied filtration rate (F, l h-1), respiration rate (R, ml O2 h-1), volume-specific (F/V) and weight-specific (F/W) filtration rates, and the ratios F/R and F/W along with growth rates of small single-osculum demosponge Halichondria panicea explants of various sizes exposed to various concentrations of algal cells. The following relationships were found: F/V=7.08V-0.24, F=a1W1.05, and R=a2W0.68 where W is the dry weight (mg). The F/R and F/W ratios were constant and essentially independent of W, and other data indicate exponential growth. It is concluded that the experimental data support the theoretical F/V∝V-1/3.
滤食性海绵是由具有一个出水口的模块组成的模块化生物。一旦形成成熟的模块,重量特异性的过滤和呼吸速率就不会改变。海绵模块仅生长到一定大小,并且为了使海绵增大,必须形成新的模块。然而,小单口模块海绵的生长特征与多模块海绵根本不同,并且理论上推导出的体积特异性过滤率为 F/V=V-1/3,表明随着总模块体积(V,cm3)的增加而减小。在这里,我们研究了过滤率(F,l h-1)、呼吸率(R,ml O2 h-1)、体积特异性(F/V)和重量特异性(F/W)过滤率以及 F/R 和 F/W 与生长率之间的关系在各种大小的暴露于各种藻类细胞浓度的小单口淡水海绵 Halichondria panicea 外植体中的比率。发现以下关系:F/V=7.08V-0.24,F=a1W1.05,和 R=a2W0.68,其中 W 是干重(mg)。F/R 和 F/W 比值是恒定的,基本上与 W 无关,并且其他数据表明呈指数增长。因此,可以得出结论,实验数据支持理论上的 F/V∝V-1/3。