Key points are not available for this paper at this time.
Predominance of Type I (phycourobilin-containing) and Type I1 (phycourobilin-lacking) phycoerythrins (PE) was examined using scanning fluorescence spectroscopy at 176 stations in the northwestern Atlantic off the northeast coast of the United States. Simultaneous optical measurements were made at 75 stations, permitting an analysis of the distribution of spectral types of PE-containing organisms based on geographic position of the stations and on the relative penetration of blue and green wavelengths of light. Stations dominated by Type I PE occurred almost exc1usively in very transparent water with high transrnissivity for blue light [downwelling attenuation coefficient; Kd(440) c 0.121 and relatively low attenuation of blue light relative to green light. This pattern was reversed for Type I1 PE, which dominated in less transparent waters with relatively high attenuation of blue light relative to green light. Type I1 PE tended to dominate on the continental shelf and slope, and Type I PE tended to dominate in the Sargasso Sea. Regardless of geographic location, there was a transition from dominance by Type I PE to Type I1 PE as the ratio Kd(440)/Kd(550) exceeded 1.25. Our data suggest that optical parameters are important nlche dimensions for marine Synechococcus and that nearshore waters may be classified ophcally by phycoerythrin characterization.
WOOD et al. (Thu,) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: