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Phosphate concentrations in lakes

Author

Listed:
  • Jeff J. Hudson

    (University of Alberta
    Dorset Environmental Sciences Centre & Trent University)

  • William D. Taylor

    (University of Waterloo)

  • David W. Schindler

    (University of Alberta)

Abstract

Phosphate is an important nutrient that restricts microbial production in many freshwater1,2,3 and marine environments4,5,6. The actual concentration of phosphate in phosphorus-limited waters is largely unknown because commonly used chemical and radiochemical techniques overestimate the concentration7,8. Here, using a new steady-state radiobioassay to survey a diverse set of lakes, we report phosphate concentrations in lakes that are orders of magnitude lower than estimates made spectrophotometrically or with the frequently used Rigler radiobioassay. Our results, combined with those from the literature, indicate that microbes can achieve rapid turnover rates at picomolar nutrient concentrations. This occurs even though these concentrations are about two orders of magnitude below the level where phosphate uptake is estimated to be half the saturation level for the picoplankton community. Also, while phosphate concentration increased with the concentration of total phosphorus and soluble reactive phosphorus in the lakes we sampled, the proportion of phosphate in the total phosphorus pool decreased from oligotrophic to eutrophic lakes. Such information, as revealed by the phosphate assay that we use here, should allow us to address hypotheses concerning the concentration of phosphate available to planktonic microorganisms in aquatic systems.

Suggested Citation

  • Jeff J. Hudson & William D. Taylor & David W. Schindler, 2000. "Phosphate concentrations in lakes," Nature, Nature, vol. 406(6791), pages 54-56, July.
  • Handle: RePEc:nat:nature:v:406:y:2000:i:6791:d:10.1038_35017531
    DOI: 10.1038/35017531
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    Cited by:

    1. Lizhi Wang & Hongli Song & Juan An & Bin Dong & Xiyuan Wu & Yuanzhi Wu & Yun Wang & Bao Li & Qianjin Liu & Wanni Yu, 2022. "Nutrients and Environmental Factors Cross Wavelet Analysis of River Yi in East China: A Multi-Scale Approach," IJERPH, MDPI, vol. 20(1), pages 1-19, December.

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