Dancing with the tides: fluctuations of coastal phytoplankton orchestrated by different oscillatory modes of the tidal cycle

PLoS One. 2012;7(11):e49319. doi: 10.1371/journal.pone.0049319. Epub 2012 Nov 14.

Abstract

Population fluctuations are often driven by an interplay between intrinsic population processes and extrinsic environmental forcing. To investigate this interplay, we analyzed fluctuations in coastal phytoplankton concentration in relation to the tidal cycle. Time series of chlorophyll fluorescence, suspended particulate matter (SPM), salinity and temperature were obtained from an automated measuring platform in the southern North Sea, covering 9 years of data at a resolution of 12 to 30 minutes. Wavelet analysis showed that chlorophyll fluctuations were dominated by periodicities of 6 hours 12 min, 12 hours 25 min, 24 hours and 15 days, which correspond to the typical periodicities of tidal current speeds, the semidiurnal tidal cycle, the day-night cycle, and the spring-neap tidal cycle, respectively. During most of the year, chlorophyll and SPM fluctuated in phase with tidal current speed, indicative of alternating periods of sinking and vertical mixing of algal cells and SPM driven by the tidal cycle. Spring blooms slowly built up over several spring-neap tidal cycles, and subsequently expanded in late spring when a strong decline of the SPM concentration during neap tide enabled a temporary "escape" of the chlorophyll concentration from the tidal mixing regime. Our results demonstrate that the tidal cycle is a major determinant of phytoplankton fluctuations at several different time scales. These findings imply that high-resolution monitoring programs are essential to capture the natural variability of phytoplankton in coastal waters.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Chlorophyll / metabolism
  • Eutrophication / physiology*
  • Fluorescence
  • North Sea
  • Particulate Matter / analysis*
  • Phytoplankton / growth & development*
  • Population Dynamics
  • Tidal Waves*
  • Time Factors

Substances

  • Particulate Matter
  • Chlorophyll

Grants and funding

This study is part of the ZKO project “Integrated monitoring of carrying capacity in coastal waters”, subsidized by the Netherlands Organisation of Scientific Research (NWO). This study was further supported by the project “Operational water quality forecasting” within the Strategic Research program of Deltares carried out for the Centre for Water Management (Waterdienst) of Rijkswaterstaat. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.