Standard Presentation 2024 Australian Marine Sciences Association Annual Meeting combined with NZMSS

A marine heatwave drives significant shifts in pelagic microbiology (#280)

Mark V Brown 1 2 , Martin Ostrowski 2 , Lauren F Messer 3 , Anna Bramucci 2 , Jodie van de Kamp 1 , Matthew C Smith 1 , Andrew Bissett 1 , Justin Seymour 2 , Alistair J Hobday 1 , Levente Bodrossy 1
  1. CSIRO, HOBART, TAS, Australia
  2. UTS, Sydney
  3. University of Stirling, Stirling, Scotland

Marine heatwaves (MHWs) cause disruption to marine ecosystems, deleteriously impacting macroflora and fauna. However, effects on microorganisms are relatively unknown despite ocean temperature being a major determinant of assemblage structure. Using data from thousands of Southern Hemisphere samples, we reveal that during an “unprecedented” 2015/16 Tasman Sea MHW, temperatures approached or surpassed the upper thermal boundary of many endemic taxa. Temperate microbial assemblages underwent a profound transition to niche states aligned with sites over 1000 km equatorward, adapting to higher temperatures and lower nutrient conditions bought on by the MHW. MHW conditions also modulate seasonal patterns of microbial diversity and support novel assemblage compositions. The most significant affects of MHWs on microbial assemblages occurred during warmer months, when temperatures exceeded the upper climatological bounds. Trends in microbial response across several MHWs in different locations suggest these are emergent properties of temperate ocean warming, which may facilitate monitoring, prediction and adaptation efforts.

  1. Brown, M.V., Ostrowski, M., Messer, L.F. et al. A marine heatwave drives significant shifts in pelagic microbiology. Commun Biol 7, 125 (2024). https://doi.org/10.1038/s42003-023-05702-4