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Biology subjects

Murillo, F. J.

Publications and source records attributed to Murillo, F. J..

2 recordsLinked to original sources

Past, present, and future spatial distributions of deep-sea coral and sponge microbiomes revealed by predictive models

Knowledge of the spatial distribution patterns of biodiversity in the ocean is key to evaluate and ensure ocean integrity and resilience. Especially for the deep ocean, where in situ monitoring requires sophisticated instruments and considerable [fi]nancial investments, modelling approaches are crucial to move from scattered data points to predictive continuous maps. Those modelling approaches are commonly run on the macrobial level, but spatio-temporal predictions of host-associated microbiomes are not being targeted. This is especially problematic as previous research has highlighted that host-associated microbes (microbiomes) may display distribution patterns that are not perfectly correlated with host animal biogeographies, but also with other factors such as prevailing environmental conditions. We here establish a new simulation approach and present predicted spatio-temporal distribution patterns of deep-sea sponge and coral microbiomes, making use of a combination of environmental data, host data and microbiome data to advance our understanding of deep-sea microbiomes. This approach allows predictions of microbiome spatio-temporal distribution patterns on scales that are currently not covered by classical sampling approaches at sea. This includes both predictions in space within regional oceanic provinces off eastern North America, and also in time, with predictions into the past and future, covering a time span of 214 years. In summary, our presented predictions allow (i) identi[fi]cation of microbial biodiversity hotspots in the past, present, and future, (ii) evaluation of microbial-macrobial connections at case-study sites through trait-based predictions, and (iii) identi[fi]cation of shifts in microbial community composition (key taxa) across environmental gradients and shifting environmental conditions.

ecology↗

Role of Astrophorina sponges (Demospongiae) in food-web interactions at the Flemish Cap (NW Atlantic)

Deep-sea sponges are important contributors to carbon and nitrogen cycling due to their large filtration capacity. Species of the suborder Astrophorina form dense sponge grounds in the North Atlantic, where they serve as prey for spongivores, but also have non-trophic interactions with commensal epi- and endobionts. At the Flemish Cap (NW Atlantic) Astrophorina sponges are present in four previously described deep-sea epifaunal assemblages: the deep-sea coral assemblage, the lower slope assemblages 1 and 2, and the deep-sea sponge assemblage. To investigate their role in trophic and non-trophic interactions at the Flemish Cap, we developed trophic-/ non-trophic interaction web models for each of the four faunal assemblages using the published literature. By excluding the sponges from the models, we estimated how many trophic, facultative and obligatory non-trophic links would be lost, and how this removal affected food-web properties (number of compartments, links, link density, and connectance). Astrophorina sponges were mostly linked via facultative non-trophic links to 60, 59, 86, and 92 compartments in the deep-sea coral, the lower slope 1 and 2, and the deep-sea sponge assemblages, respectively. Direct trophic links only existed to Echinasteridae and Pterasteridae. As removing Astrophorina sponges from the interaction webs of the different assemblages had the highest impact on food-web properties compared to removing any other fauna present, these sponges were considered "highest impact taxa". They were also identified, along with sea pens, as "structural species"/ "habitat formers" and "foundation species" based on non-trophic interactions in the deep-sea coral and deep-sea sponge assemblages.

ecology↗