Skip to main content
Log in

Alanine enantiomeric ratio in the combined amino acid fraction in seawater

  • Letter
  • Published:

From Nature

View current issue Submit your manuscript

Abstract

In deep ocean waters the concentrations of free amino acids are very close to blank levels, while surface waters contain only very low quantities1,2. However, the concentration of ‘combined’ amino acids (whoch occur at all ocean depths in significant quantities) is roughly 10 times that of free amino acids1,2. These combined amino acids are bound in some sort of polymeric material and are released only on hydrolysis in strong acid. The combined amino acid material apparently has a substantial D-aspartic acid content; the D/L aspartic acid ratio in the combined amino acid fraction, isolated from water from the Sargasso Sea, is ∼0.4 at all depths2. It has been suggested that combined amino acids were not actually part of the dissolved organic material in the oceans but were components of bacteria that passed through the filter used in the initial seawater-processing step2,3. Although in most organisms only the L-enantiomers of the amino acids are present, becateria contain several D-amino acids in then cell-wall proteins4. To verify the bacterial explanation we have carried out investigations into the enantiomeric composition of amino acids, besides aspartic acid, in the combined fraction. We measured the alanine enan-tiomeric ratio in seawater samples from three stations in the Pacific Ocean. Alanine was chosen because it is one of the more abundant components of the combined amino acid fraction in the oceans1,2, and because D-alanine is a major component of bacterial cell-wall proteins4.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  1. Lee, C. & Bada, J. L. Earth planet. Sci. Lett. 26, 61 (1975).

    Article  ADS  CAS  Google Scholar 

  2. Lee, C. & Bada, J. L. Limnol. Oceanogr. 22, 502 (1977).

    Article  ADS  CAS  Google Scholar 

  3. Bada, J. L. & Lee, C. Mar. Chem. 5, 523 (1977).

    Article  CAS  Google Scholar 

  4. Meister, A. Biochemistry of the Amino Acids, 2nd edn, 113–115 (Academic, New York, 1974).

    Google Scholar 

  5. Hoopes, E. A., Peltzer, E. T. & Bada, J. L. J. chromatogr. Sci. 16, 556 (1978).

    Article  CAS  Google Scholar 

  6. Schroeder, R. A. & Bada, J. L. Earth Sci. Rev. 12, 347 (1976).

    Article  ADS  CAS  Google Scholar 

  7. Bada, J. L. Adv. Chem. Ser. No. 106, 309 (1971).

  8. Craig, H. J. geophys. Rev. 76, 5078 (1971).

    Article  ADS  CAS  Google Scholar 

  9. Bada, J. L., Shou, M.-Y., Man, G. & Schroeder, R. A. Earth planet. Sci. Lett. 41, 67 (1978).

    Article  ADS  CAS  Google Scholar 

  10. Shou, M.-Y. thesis, Univ. California (1979).

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Bada, J., Hoopes, E. Alanine enantiomeric ratio in the combined amino acid fraction in seawater. Nature 282, 822–823 (1979). https://doi.org/10.1038/282822a0

Download citation

  • Received:

  • Accepted:

  • Issue Date:

  • DOI: https://doi.org/10.1038/282822a0

  • Springer Nature Limited

This article is cited by

Navigation