Quantitative and qualitative analyses of dissolved organic matter released from Ecklonia cava Kjellman, in Oura Bay, Shimoda, Izu Peninsula, Japan

溶解有机碳 有色溶解有机物 有机质 藻类 生物 环境化学 作文(语言) 海湾 颜料 植物 营养物 生态学 浮游植物 化学 海洋学 哲学 地质学 有机化学 语言学
作者
Shigeki Wada,Masakazu Aoki,Yasutaka Tsuchiya,Toshihiko Satō,Hideo Shinagawa,Takeo Hama
出处
期刊:Journal of Experimental Marine Biology and Ecology [Elsevier]
卷期号:349 (2): 344-358 被引量:128
标识
DOI:10.1016/j.jembe.2007.05.024
摘要

Release of dissolved organic matter (DOM) was studied on macroalga, Ecklonia cava Kjellman, by in situ field bag experiments, which were designed to keep the algal body under natural field condition, in Oura Bay, Shimoda, Izu Peninsula, Japan, from August 2003 to May 2005. The experiments were conducted 6 times in different seasons. The concentrations of dissolved organic carbon (DOC) in the experimental bag generally increased during the first 1–2 days, showing the release of DOC from algae. The daily release rates of DOC varied between 0.12 and 5.8 mgC per g (dry wt) of the algal blades per day. The seasonal variability of the DOC release rate was similar to those of the growth and the photosynthetic rates reported by the previous studies on E. cava in the same location. The fractions of the DOC release of the net primary production accounted for 18–62%. These contributions are comparable to other macroalgae in the previous studies (27–43%) using other macroalgae. Analysis of organic composition of DOM using gas chromatography (neutral aldose composition) and spectrometry (UV-visible and fluorescence) indicates that E. cava usually release extracellular products containing mucilaginous polysaccharides containing fucose as a main constituent and colored dissolved organic matter (CDOM). The release of these organic compounds is likely performed as the ordinary metabolism of brown algae. An exceptional release of a considerable amount of protein and carbohydrates mainly composed of mannose was found in June 2004, probably reflecting leakage of the intracellular material by an autolysis of the algal cells. The high DOM release rate in the present study suggests that macroalgae would be one of the important DOM producers in coastal regions.
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