Inter-Research
MEPS
Home
Editors
Forthcoming
Information
Subscribe
Journals
Home
MEPS
AME
CR
DAO
ESEP
Search
Subscribe
Books
Top Books
EE Books
Order
ECI
Home
EEIU
Home
| |
MEPS 190:289-295 (1999)
|
Abstract
|

Importance of extracellular organic carbon production in the total primary production by tidal-flat diatoms in comparison to phytoplankton
Naoshige Goto1,*, Tomohiko Kawamura2, Osamu Mitamura3, Hisayoshi Terai1
1Institute for Hydrospheric-Atmospheric Sciences, Nagoya University, Furo-cho, Chikusa-ku, Nagoya 464-8601, Japan
2Tohoku National Fisheries Research Institute, Shinhama, 3-27-5, Shiogama, Miyagi 985-0001, Japan
3Limnological Laboratory, School of Environmental Science, The University of Shiga Prefecture, 3165, Yasaka-machi, Hikone, Shiga 522-0057, Japan
*E-mail: nao@ihas.nagoya-u.ac.jp

ABSTRACT: Microphytobenthos, mainly benthic diatoms, produce mucilages containing extracellular polymeric substances (EPS) on the cell surface. The ratios of particulate organic carbon (14C-POC) and total extracellular organic carbon (TEOC: the
total of extracellular dissolved organic carbon [14C-EDOC] and colloidal organic carbon [14C-Colloidal-OC] extracted with EDTA) to total primary production (TPP) were measured using 14C-tracer to estimate the ratio for
each fraction of organic carbon photosynthetically produced by microphytobenthos and phytoplankton. TEOC for microphytobenthos ranged from 42 to 73% of TPP and was made up mostly of 14C-Colloidal-OC. The TEOC/TPP for phytoplankton ranged from
1.5 to 22%. The ratio of 14C-EPS to 14C-Colloidal-OC for microphytobenthos was 41 to 53%, and for phytoplankton was 4.4 to 24%. Algal species in the transitional phase were used for experiments because microphytobenthos
Nitzschia hybridaeformis most abundantly produced TEOC and EPS in the transitional phase during growth in experiments studying the effect of the growth phase. By using EDTA for the extraction of extracellular organic matter, it becomes clear
that excretion of colloidal organic matter by microphytobenthos has always been underestimated. These results suggest that the large amount of TEOC containing EPS produced by microphytobenthos plays a more important role than secretion of phytoplankton
as a source of organic carbon for heterotrophic organisms in the intertidal-flat ecosystem.
KEY WORDS: Microphytobenthos · Extracellular organic carbon · Extracellular polymeric substances

Published in MEPS Vol.
190
(1999) on December 14
ISSN: 0171-8630.
Copyright © Inter-Research, Oldendorf/Luhe, 1999
|