Empirical Leucine-to-Carbon Conversion Factors for Estimating Heterotrophic Bacterial Production: Seasonality and Predictability in a Temperate Coastal Ecosystem
Author:
Affiliation:
1. Instituto Español de Oceanografía, Centro Oceanográfico de Xixón, Camín de L'Arbeyal, s/n, E-33212 Xixón, Spain
2. The Ecosystems Center, MBL, 7 MBL Street, Woods Hole, Massachusetts 02543-1015
Abstract
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Link
https://journals.asm.org/doi/pdf/10.1128/AEM.01570-08
Reference28 articles.
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2. Alonso-Sáez, L., J. M. Gasol, J. Arístegui, J. C. Vilas, D. Vaqué, C. M. Duarte, and S. Agustí. 2007. Large-scale variability in surface bacterial carbon demand and growth efficiency in the subtropical northeast Atlantic Ocean. Limnol. Oceanogr.52:533-546.
3. Alonso-Sáez, L., E. Vázquez-Domínguez, C. Cardelús, J. Pinhassi, M. M. Sala, I. Lekunberri, V. Balagué, M. Vila-Costa, F. Unrein, R. Massana, R. Simó, and J. M. Gasol. 2008. Factors controlling the year-round variability in carbon flux through bacteria in a coastal marine system. Ecosystems11:397-409.
4. Barbosa, A. B., H. M. Galvao, P. A. Mendes, X. A. Álvarez-Salgado, F. G. Figueiras, and I. Joint. 2001. Short-term variability of heterotrophic bacterioplankton during upwelling off the NW Iberian margin. Prog. Oceanogr.51:339-359.
5. Bell, R. T. 1993. Estimating production of heterotrophic bacterioplankton via incorporation of tritiated thymidine, p. 495-503. In P. F. Kemp, B. F. Sherr, E. B. Sherr, and J. J. Cole (ed.), Handbook of methods in aquatic microbial ecology. Lewis Publishers, Boca Raton, FL.
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