Author:
Bart Martijn C.,de Kluijver Anna,Hoetjes Sean,Absalah Samira,Mueller Benjamin,Kenchington Ellen,Rapp Hans Tore,de Goeij Jasper M.
Abstract
AbstractDeep-sea sponges create hotspots of biodiversity and biological activity in the otherwise barren deep-sea. However, it remains elusive how sponge hosts and their microbial symbionts acquire and process food in these food-limited environments. Therefore, we traced the processing (i.e. assimilation and respiration) of 13C- and 15N-enriched dissolved organic matter (DOM) and bacteria by three dominant North Atlantic deep-sea sponges: the high microbial abundance (HMA) demosponge Geodia barretti, the low microbial abundance (LMA) demosponge Hymedesmia paupertas, and the LMA hexactinellid Vazella pourtalesii. We also assessed the assimilation of both food sources into sponge- and bacteria-specific phospholipid-derived fatty acid (PLFA) biomarkers. All sponges were capable of assimilating DOM as well as bacteria. However, processing of the two food sources differed considerably between the tested species: the DOM assimilation-to-respiration efficiency was highest for the HMA sponge, yet uptake rates were 4–5 times lower compared to LMA sponges. In contrast, bacteria were assimilated most efficiently and at the highest rate by the hexactinellid compared to the demosponges. Our results indicate that phylogeny and functional traits (e.g., abundance of microbial symbionts, morphology) influence food preferences and diet composition of sponges, which further helps to understand their role as key ecosystem engineers of deep-sea habitats.
Funder
European Commission
Fisheries and Oceans Canada
Publisher
Springer Science and Business Media LLC
Reference78 articles.
1. Thomson, W. On Holtenia, a genus of vitreous sponges. Proc. R. Soc. Lond. 18(114–122), 32–35 (1869).
2. Carter, H. J. Descriptions and figures of deep-sea sponges and their spicules from the Atlantic Ocean dredged up on board HMS Porcupine chiefly in 1869. Ann. Mag. Nat. Hist. 4(14), 207–221 (1874).
3. Bett, B. J. & Rice, A. L. The influence of hexactinellid sponge (Pheronema carpenteri) spicules on the patchy distribution of macrobenthos in the porcupine seabight (bathyal ne atlantic). Ophelia 36(3), 217–226 (1992).
4. Buhl-Mortensen, L. et al. Biological structures as a source of habitat heterogeneity and biodiversity on the deep ocean margins. Mar. Ecol. 31(1), 21–50 (2010).
5. Maldonado, M., et al. Sponge grounds as key marine habitats: a synthetic review of types, structure, functional roles, and conservation concerns. In: Marine Animal Forests (eds Rossi, S., Bramanti, L., Gori, A., Orejas Saco del Valle, C.) (Springer, Berlin, 2016).
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