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      Diatom Biogeography, Temporal Dynamics, and Links to Bacterioplankton across Seven Oceanographic Time-Series Sites Spanning the Australian Continent.

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          Abstract

          Diatom communities significantly influence ocean primary productivity and carbon cycling, but their spatial and temporal dynamics are highly heterogeneous and are governed by a complex diverse suite of abiotic and biotic factors. We examined the seasonal and biogeographical dynamics of diatom communities in Australian coastal waters using amplicon sequencing data (18S-16S rRNA gene) derived from a network of oceanographic time-series spanning the Australian continent. We demonstrate that diatom community composition in this region displays significant biogeography, with each site harbouring distinct community structures. Temperature and nutrients were identified as the key environmental contributors to differences in diatom communities at all sites, collectively explaining 21% of the variability observed in diatoms assemblages. However, specific groups of bacteria previously implicated in mutualistic ecological interactions with diatoms (Rhodobacteraceae, Flavobacteriaceae and Alteromonadaceae) also explained a further 4% of the spatial dynamics observed in diatom community structure. We also demonstrate that the two most temperate sites (Port Hacking and Maria Island) exhibited strong seasonality in diatom community and that at these sites, winter diatom communities co-occurred with higher proportion of Alteromonadaceae. In addition, we identified significant co-occurrence between specific diatom and bacterial amplicon sequence variants (ASVs), with members of the Roseobacter and Flavobacteria clades strongly correlated with some of the most abundant diatom genera (Skeletonema, Thalassiosira, and Cylindrotheca). We propose that some of these co-occurrences might be indicative of ecologically important interactions between diatoms and bacteria. Our analyses reveal that in addition to physico-chemical conditions (i.e., temperature, nutrients), the relative abundance of specific groups of bacteria appear to play an important role in shaping the spatial and temporal dynamics of marine diatom communities.

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          Author and article information

          Journal
          Microorganisms
          Microorganisms
          MDPI AG
          2076-2607
          2076-2607
          Feb 01 2022
          : 10
          : 2
          Affiliations
          [1 ] Climate Change Cluster, University of Technology Sydney, Ultimo, NSW 2007, Australia.
          [2 ] School of Environmental and Life Sciences, The University of Newcastle, Callaghan, NSW 2308, Australia.
          [3 ] Oceans and Atmosphere, Commonwealth Scientific and Industrial Research Organisation, Battery Point, TAS 7004, Australia.
          [4 ] School of Life Sciences, University of Technology Sydney, Ultimo, NSW 2007, Australia.
          Article
          microorganisms10020338
          10.3390/microorganisms10020338
          8880096
          35208793
          5b201a3c-34ad-4f21-9a6a-900a8242a166
          History

          seasonality,marine bacteria,diatoms biogeography,co-occurrence,Australia,time-series

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