Effects of macroalgal blooms on carbon and nitrogen biogeochemical cycling in photoautotrophic sediments: An experimental mesocosm

被引:33
作者
Garcia-Robledo, E. [1 ]
Corzo, A. [1 ]
机构
[1] Univ Cadiz, Fac Ciencias Mar & Ambientales, Dpto Biol, Cadiz 11510, Spain
关键词
Macroalgae bloom; Microbenthos; Microphytobenthos; Sediment net metabolism; Microelectrodes; Intertidal sediments; ESTUARINE SEDIMENTS; BENTHIC MICROALGAE; MICROBIAL MATS; ULVA-LACTUCA; DENITRIFICATION; DECOMPOSITION; NITRIFICATION; GROWTH; MICROPHYTOBENTHOS; MICROBENTHOS;
D O I
10.1016/j.marpolbul.2011.03.044
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The effects of floating macroalgae (250 g DW m(-2)) on photoautotrophic microbenthos were studied in a flow-through mesocosm with a parallel mesocosm without macroalgae serving as Control. Vertical microprofiles of O-2 at the sediment-water interface showed a immediate and complete suppression of photosynthetic activity of microphytobenthos (MPB) under the macroalgal canopy, resulting in a shift of benthic metabolism from autotrophic to heterotrophic. MPB abundance and chlorophyll a content decreased and a change from a diatom-dominated to cyanobacteria-dominated community was observed. Inorganic nitrogen nutrients concentrations increased in the porewater as a result of the inhibition of MPB nutrient demand, leading to an increase in net ammonification and anaerobic NO; consumption rates. No organic matter transfer from macroalgae to the sediment was detected, resulting in a net consumption of the carbon and nitrogen stored in the sediment. In consequence, sediment was progressively impoverished in nitrogen, reducing sediment nutrient regeneration. (C) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1550 / 1556
页数:7
相关论文
共 42 条
[1]   The dynamics of unattached benthic macroalgal accumulations in the Swan-Canning Estuary [J].
Astill, H ;
Lavery, PS .
HYDROLOGICAL PROCESSES, 2001, 15 (13) :2387-2399
[2]   Interpretation of measured concentration profiles in sediment pore water [J].
Berg, P ;
Risgaard-Petersen, N ;
Rysgaard, S .
LIMNOLOGY AND OCEANOGRAPHY, 1998, 43 (07) :1500-1510
[3]  
Boone DR., 2001, Bergey's Manual of Systematic Bacteriology, V1, DOI 10.1007/978-0-387-21609-6
[4]  
BOURRELLY P, 1981, ALGUES EAU DOUCE INI
[5]  
Cahoon LB, 1999, OCEANOGR MAR BIOL, V37, P47
[6]  
Canfield DE, 2005, ADV MAR BIOL, V48, P313
[7]   THE REACTIVITY OF SEDIMENTARY IRON MINERALS TOWARD SULFIDE [J].
CANFIELD, DE ;
RAISWELL, R ;
BOTTRELL, S .
AMERICAN JOURNAL OF SCIENCE, 1992, 292 (09) :659-683
[8]   ADAPTATION TO HYDROGEN-SULFIDE OF OXYGENIC AND ANOXYGENIC PHOTOSYNTHESIS AMONG CYANOBACTERIA [J].
COHEN, Y ;
JORGENSEN, BB ;
REVSBECH, NP ;
POPLAWSKI, R .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1986, 51 (02) :398-407
[9]   Effects of green macroalgal blooms on intertidal sediments: net metabolism and carbon and nitrogen contents [J].
Corzo, A. ;
van Bergeijk, S. A. ;
Garcia-Robledo, E. .
MARINE ECOLOGY PROGRESS SERIES, 2009, 380 :81-93
[10]   Benthic primary production and nutrient cycling in sediments with benthic microalgae and transient accumulation of macroalgae [J].
Dalsgaard, T .
LIMNOLOGY AND OCEANOGRAPHY, 2003, 48 (06) :2138-2150