期刊论文详细信息
Marine Ecology Progress Series
Organic matter release by the dominant primary producers in a Caribbean reef lagoon: implication for in situ O2 availability
Roberto Iglesias-Prieto1  Andreas F. Haas1  Carin Jantzen1  Christian Wild1  Malik S. Naumann1 
关键词: Organic matter;    Primary producer;    Caribbean reef lagoon;    Oxygen;    Coral;    Algae;    Seagrass;   
DOI  :  10.3354/meps08631
学科分类:海洋学与技术
来源: Inter-Research
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【 摘 要 】

ABSTRACT: Coral reef lagoon benthic primary producers may control various processes important for ecosystem functioning, predominately via the release of organic matter, but comparative data are rare. This study therefore comparatively investigated the quantity of particulate and dissolved organic matter released by different benthic primary producers (seagrasses, macroalgae and scleractinian corals) from the coral reef lagoon of Puerto Morelos, Mexican Caribbean. Microbial degradability of the released organic matter was determined along with diurnal in situ measurements of O2 concentrations at lagoon sites dominated by different primary producers. Particulate organic carbon (POC) release was highest for corals (8.2 ± 4.2 mg m–2 h–1), followed by benthic algae (3.9 ± 0.7 mg m–2 h–1) and seagrasses (3.1 ± 2.0 mg m–2 h–1). Dissolved organic carbon (DOC) release rates were highest for seagrasses (15.8 ± 6.0 mg m–2 h–1), followed by algae (1.9 ± 2.0 mg m–2 h–1), whereas corals displayed net DOC uptake. Benthic algae-derived organic matter stimulated planktonic microbial O2 consumption significantly more than seagrass- or coral-derived organic matter. In situ O2 loggers revealed significantly lower average O2 concentrations, particularly during the night, at algae-dominated sites compared to other benthic lagoon environments. This indicates effects of algae-derived organic matter on in situ O2 availability. We therefore suggest that shifts in benthic primary producer dominance affect ecosystem functioning owing to differences in quantity, composition and microbial degradability of the released organic matter.

【 授权许可】

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