Size Effects on Pumping Rates in High Microbial versus Low Microbial Abundance Marine Sponges

Oceans Pub Date : 2023-11-30 DOI:10.3390/oceans4040027
Michael P. Lesser
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Abstract

Sponges are increasingly recognized as ecologically important on coral reefs as scleractinian corals decline. Most sponge species can be divided into two symbiotic phenotypes which are characterized as high microbial abundance (HMA) or low microbial abundance (LMA) sponges. Sponge species of HMA or LMA symbiotic phenotypes differ not just in their microbiomes, but in other characteristics, including that LMA sponges actively pump at higher rates than HMA sponges based on a standard normalization to size. This dichotomy has recently been questioned because the size range of LMA sponges used to quantify pumping rates during studies on their trophic ecology were exceedingly small, often less than an order of magnitude. Here, both HMA and LMA sponges, across two to three orders of magnitude in sponge volume (mL) or mass (g) were assessed for allometric relationships between sponge size and pumping rates (Q = mL s−1). The scaling analysis of all data sets combined reveals that HMA sponges scale their pumping rates isometrically with size, while LMA sponges scale their pumping rate allometrically. When HMA species are examined separately, however, tropical HMA sponges scaled isometrically, while temperate HMA sponges scaled allometrically. From an ecological perspective, to quantify differences between HMA and LMA sponges for rate functions of interest (e.g., feeding) it is important to remove the effects of size as a covariate, and adjust the Q values of sponges to a standard volume or mass. For multiple species and geographic locations, this analysis shows that LMA sponges always maintain higher Q values. On tropical coral reefs, the differences between HMA and LMA sponges are intrinsic and constrained by strong evolutionary selection resulting in fixed differences in Q, regardless of sponge size.
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高微生物丰度与低微生物丰度海洋海绵的大小对抽水速率的影响
随着硬骨珊瑚的减少,海绵在珊瑚礁上的生态重要性日益得到认可。大多数海绵物种可分为两种共生表型,即高微生物丰度海绵(HMA)和低微生物丰度海绵(LMA)。高微生物丰度或低微生物丰度共生表型的海绵物种不仅在微生物组方面存在差异,而且在其他特征方面也存在差异,其中包括根据大小标准归一化,低微生物丰度海绵的主动泵送率高于高微生物丰度海绵。这种二分法最近受到了质疑,因为在对它们的营养生态学进行研究时,用于量化抽水速率的 LMA 海绵的尺寸范围非常小,通常不到一个数量级。在此,我们对海绵体积(毫升)或质量(克)跨越两到三个数量级的 HMA 和 LMA 海绵进行了评估,以确定海绵大小与抽水速率(Q = 毫升 s-1)之间的异速关系。对所有数据集进行的缩放分析表明,HMA 海绵的抽水速率与体积大小成等比例关系,而 LMA 海绵的抽水速率与体积大小成异比例关系。然而,当单独研究 HMA 物种时,热带 HMA 海绵的抽水量呈等比例增长,而温带 HMA 海绵的抽水量则呈异比例增长。从生态学的角度来看,要量化 HMA 和 LMA 海绵在相关速率函数(如摄食)方面的差异,必须去除尺寸作为协变量的影响,并将海绵的 Q 值调整为标准体积或质量。对于多个物种和多个地理位置,该分析表明 LMA 海绵始终保持较高的 Q 值。在热带珊瑚礁上,HMA 和 LMA 海绵之间的差异是固有的,并受制于强大的进化选择,从而导致 Q 值的固定差异,而与海绵的大小无关。
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Reply to Kahng, S.E. Comment on “Lesser et al. Using Stable Isotope Analyses to Assess the Trophic Ecology of Scleractinian Corals. Oceans 2022, 3, 527–546” Cnida Morphology as Taxonomic Tools within Tube-Dwelling Anemones (Ceriantharia, Cnidaria) Comment on Lesser et al. Using Stable Isotope Analyses to Assess the Trophic Ecology of Scleractinian Corals. Oceans 2022, 3, 527–546 A Comparison between the Production of Edible Macroalgae Worldwide and in the Mediterranean Sea Coupled Meteo–Hydrodynamic Approach in Semi-Enclosed Basins and Sensitivity Assessment of Wind-Driven Current
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