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High resolution time series reveals cohesive but short-lived communities in coastal plankton

  • Antonio M. Martin-Platero
  • , Brian Cleary
  • , Kathryn Kauffman
  • , Sarah P. Preheim
  • , Dennis J. McGillicuddy
  • , Eric J. Alm
  • , Martin F. Polz
  • Massachusetts Institute of Technology
  • University of Granada
  • The Broad Institute of MIT and Harvard
  • Johns Hopkins University
  • Woods Hole Oceanographic Institution

Research output: Contribution to journalArticlepeer-review

115 Scopus citations

Abstract

Because microbial plankton in the ocean comprise diverse bacteria, algae, and protists that are subject to environmental forcing on multiple spatial and temporal scales, a fundamental open question is to what extent these organisms form ecologically cohesive communities. Here we show that although all taxa undergo large, near daily fluctuations in abundance, microbial plankton are organized into clearly defined communities whose turnover is rapid and sharp. We analyze a time series of 93 consecutive days of coastal plankton using a technique that allows inference of communities as modular units of interacting taxa by determining positive and negative correlations at different temporal frequencies. This approach shows both coordinated population expansions that demarcate community boundaries and high frequency of positive and negative associations among populations within communities. Our analysis thus highlights that the environmental variability of the coastal ocean is mirrored in sharp transitions of defined but ephemeral communities of organisms.

Original languageEnglish
Article number266
JournalNature Communications
Volume9
Issue number1
DOIs
StatePublished - Dec 1 2018

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