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Scientific Reports|February 13, 2014
Sponge larval settlement cues: the role of microbial biofilms in a warming oceanS Whalan, N S WebsterMarine Biotechnology (New York, N.Y.)|February 13, 2004
Detection and phylogenetic analysis of novel crenarchaeote and euryarchaeote 16S ribosomal RNA gene sequences from a Great Barrier Reef spongeN S Webster, J E Watts, R T HillApplied and Environmental Microbiology|January 3, 2001
Phylogenetic diversity of bacteria associated with the marine sponge Rhopaloeides odorabileN S Webster, K J Wilson, L L Blackall, et al.Marine Pollution Bulletin|June 3, 2004
TBT contamination identified in Antarctic marine sedimentsA P Negri, L T Hales, C Battershill, et al.Environmental Microbiology Reports|October 20, 2020
Simulated future conditions of ocean warming and acidification disrupt the microbiome of the calcifying foraminifera Marginopora vertebralis across life stagesE S Botté, H M Luter, E Marangon, et al.Environmental Microbiology|February 28, 2001
The effects of copper on the microbial community of a coral reef spongeN S Webster, R I Webb, M J Ridd, et al.Environmental Microbiology Reports|April 16, 2013
Near-future ocean acidification causes differences in microbial associations within diverse coral reef taxaN S Webster, A P Negri, F Flores, et al.Frontiers in Microbiology|January 25, 2013
Same, same but different: symbiotic bacterial associations in GBR spongesN S Webster, H M Luter, R M Soo, et al.Scientific Reports|May 24, 2017
The response of a boreal deep-sea sponge holobiont to acute thermal stressR Strand, S Whalan, N S Webster, et al.Scientific Reports|January 14, 2016
Host-associated coral reef microbes respond to the cumulative pressures of ocean warming and ocean acidificationN S Webster, A P Negri, E S Botté, et al.Pageof 2