Temperature as indicator of optical properties and community structure of marine phytoplankton: implications for remote sensing

被引:89
作者
Bouman, HA [1 ]
Platt, T
Sathyendranath, S
Li, WKW
Stuart, V
Fuentes-Yaco, C
Maass, H
Horne, EPW
Ulloa, O
Lutz, V
Kyewalyanga, M
机构
[1] Dalhousie Univ, Dept Biol, Halifax, NS B3H 4J1, Canada
[2] Dalhousie Univ, Dept Oceanog, Halifax, NS B3H 4J1, Canada
[3] Bedford Inst Oceanog, Div Biol Oceanog, Dartmouth, NS B2A 4A2, Canada
[4] Univ Concepcion, Concepcion 3, Chile
[5] Inst Nacl Invest & Desarrollo Pesquero, Mar Del Plata, Argentina
[6] Univ Dar Es Salaam, Inst Marine Sci, Zanzibar, Tanzania
关键词
phytoplankton community structure; absorption spectrum; temperature; remote sensing;
D O I
10.3354/meps258019
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Using temperature as an independent variable, we were able to explain some 43 and 49% of the variance in the specific absorption coefficient of phytoplankton (a*(lambda)) at wavelengths (lambda) 443 and 676 nm, respectively, for some 1187 samples collected over a broad range of oceanographic regimes. Through examination of ancillary data, we demonstrate that our results are consistent with the view that the size structure and taxonomic composition of phytoplanktonic communities are regulated by physical processes, for which temperature is often a suitable proxy. Results obtained from multiple-linear regression analysis showed that by using temperature and chlorophyll a concentration, both of which can be retrieved by remote sensing, a larger proportion of the residual variance in a*(lambda) could be explained than if chlorophyll a concentration were used alone. Furthermore, as a single independent variable, temperature could explain nearly an equal proportion of the variance of a* (lambda) as chlorophyll a. These results show clearly the potential of using satellite-derived temperature data to improve retrieval of phytoplankton biomass from remotely sensed data on ocean colour.
引用
收藏
页码:19 / 30
页数:12
相关论文
共 55 条
[11]   ACCLIMATION TO SPECTRAL IRRADIANCE IN ALGAE [J].
FALKOWSKI, PG ;
LAROCHE, J .
JOURNAL OF PHYCOLOGY, 1991, 27 (01) :8-14
[12]   Variability in chlorophyll α specific absorption coefficient in marine phytoplankton as a function of cell size and irradiance [J].
Fujiki, T ;
Taguchi, S .
JOURNAL OF PLANKTON RESEARCH, 2002, 24 (09) :859-874
[13]  
GEIDER RJ, 1986, MAR ECOL PROG SER, V30, P85
[14]   Top-down control of phytoplankton biomass and community structure in the monsoonal Arabian Sea [J].
Goericke, R .
LIMNOLOGY AND OCEANOGRAPHY, 2002, 47 (05) :1307-1323
[15]   TRANSGENIC MICE - A NEW AND POWERFUL EXPERIMENTAL TOOL IN MAMMALIAN DEVELOPMENTAL GENETICS [J].
GORDON, JW .
DEVELOPMENTAL GENETICS, 1983, 4 (01) :1-20
[16]  
GRAN H. H., 1935, JOUR BIOL BD CANADA, V1, P279
[17]   PIGMENT TRANSFORMATION AND VERTICAL FLUX IN AN AREA OF CONVERGENCE IN THE NORTH-ATLANTIC [J].
HEAD, EJH ;
HORNE, EPW .
DEEP-SEA RESEARCH PART II-TOPICAL STUDIES IN OCEANOGRAPHY, 1993, 40 (1-2) :329-346
[18]   EFFECT OF PIGMENT COMPOSITION ON ABSORPTION PROPERTIES OF PHYTOPLANKTON [J].
HOEPFFNER, N ;
SATHYENDRANATH, S .
MARINE ECOLOGY PROGRESS SERIES, 1991, 73 (01) :11-23
[19]   BIOOPTICAL CHARACTERISTICS OF COASTAL WATERS - ABSORPTION-SPECTRA OF PHYTOPLANKTON AND PIGMENT DISTRIBUTION IN THE WESTERN NORTH-ATLANTIC [J].
HOEPFFNER, N ;
SATHYENDRANATH, S .
LIMNOLOGY AND OCEANOGRAPHY, 1992, 37 (08) :1660-1679
[20]   DETERMINATION OF THE MAJOR GROUPS OF PHYTOPLANKTON PIGMENTS FROM THE ABSORPTION-SPECTRA OF TOTAL PARTICULATE MATTER [J].
HOEPFFNER, N ;
SATHYENDRANATH, S .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 1993, 98 (C12) :22789-22803