Page 196 - Algae Anatomy, Biochemistry, and Biotechnology
P. 196
Biogeochemical Role of Algae 179
Lomans, B. P., van der Drift, C., Pol, A., and Op den Camp, H. J. M., Microbial cycling of volatile organic
sulfur compounds, Cellular and Molecular Life Sciences, 59, 575–588, 2002.
Lundgren, P., Soderback, E., Singer, A., Carpenter, E. J., and Bergman, B., Katagnymene: characterization of a
novel marine diazotroph, Journal of Phycology, 37, 1052–1062, 2001.
Misra, H., Khairnar, S., and Mahajan, S. K., An alternate photosynthetic electron donor system for
PSI supports light dependent nitrogen fixation in a non-heterocystous cyanobacterium, Plectonema
boryanum. Journal of Plant Physiology, 160, 33–39, 2003.
NASA’s Earth Science Enterprise Research Strategy for 2000–2010. Biology and Biogeochemistry NASA
research on the biology and biogeochemistry of ecosystems and the global carbon cycle aims to understand
and predict how terrestrial and marine ecosystems are changing. http://earth.nasa.
gov/visions/researchstrat/
Navarro-Gonzales, R., McKay, C. P., and Mvondo, D. N., A possible nitrogen crisis for Archean life due to
reduced nitrogen fixation by lightning. Nature, 412, 61–64, 2001.
Otsuki, T., A study of the biological CO 2 fixation and utilization system. The Science of Total Environment, 27,
121–25, 2001.
Raymond, J., Siefert, J. L., Staples, C. R., and Blankenship, R. E., The natural history of nitrogen fixation.
Molecular Biology and Evolution, 21, 541–554, 2004.
Raven, J. A. and Falkowki, P. G., Oceanic sinks for atmospheric CO 2 , Plant and Cell Environment, 22, 741–
755, 1999.
Raven, J. A. and White, A. M., The evolution of silicification in diatoms: inesplicable sinking and sinking as
escape? New Phytologist, 162, 45–61, 2004.
Sarmiento, J. L. and Gruber, N., Ocean Biogeochemical Dynamics, Princeton University Press, Princeton,
2004.
Sarmiento, J. L., Wofsy, S. C., Shea, E., Denning, A. S., Easterling, W., Field, C., Fung, I., Keeling, R.,
McCarthy, J., Pacala, S., Post, W. M., Schimel, D., Sundquist, E., Tans, P., Weiss, R., and Yoder, J.,
A U.S. Carbon Cycle Science Plan. University Corporation for Atmospheric Research, Boulder,
Colorado, 1999.
Seibach, J., Ed., Cellular Origin and Life in Extreme Habitats, Vol. 3, Kluwer, Dordrecht, 2002.
Seitzinger, S. P., Sander, R. W., and Styles, R., Bioavalability of DON from natural and antropogenic sources
to estuarine plankton, Limnology and Oceanography, 47, 353–366, 2002.
Sharpley, A. N., Daniel, T., Sims, T., Lemunyon, J., Stevens, R., and Parry, R., Agricultural phosphorus and
eutrophication, United States Department of Agriculture, Agricultural Research Service ARS–149, 2003.
Sunda, W., Kleber, D. J., Keine, R., and Huntsman, S., An antioxidant function for DMSP and DMS in marine
algae, Nature, 418, 317–320, 2002.
The Open University, Ocean Chemistry and Deep-sea Sediments, Butterworth-Heinemann, Oxford, 2001.
Toggweller, J. R., An ultimately limiting nutrient, Nature, 400, 511–512, 1999.
Tyrrel, T., The relative influence of nitrogen and phosphorus on oceanic primary production, Nature, 400,
525–531, 1999.
Van Alstyne, K. L. and Houser, L. T., Dimethylsulfide release during macroinvertebrate grazing and its role as
an activated chemical defense, Marine Ecology Progress Series, 250, 175–181, 2003.
Wolfe, G. V., Steinke, M., and Kirst, G. O., Grazing-activated chemical defence in a unicellular marine algae,
Nature, 387, 894–897, 1997.
Yool, A. and Tyrrel, T., Role of diatoms in regulating the ocean’s silicon cycle, Global Biogeochemical
Cycles, 17, 1103–1124, 2003
http://www.afsni.ac.uk/Research/eutrophication.htm
http://www.calspace.ucsd.edu/distance.htm
http://www.environment-agency.gov.uk/
http://www.essp.csumb.edu/esse/
http://www.freshwater.canberra.edu.au/
http://www.globalchange.umich.edu/
http://history.nasa.gov/CP-2156/contents.htm
http://www.icsu-scope.org/
http://www.icsu-scope.org/downloadpubs/scope13/
http://www.icsu-scope.org/downloadpubs/scope48/