Multiple carbon substrate utilization by bacteria at the sediment-water interface: seasonal patterns in a stratified eutrophic reservoir

被引:35
作者
Christian, Bradley W. [1 ]
Lind, Owen T. [1 ]
机构
[1] Baylor Univ, Ctr Reservoir & Aquat Syst Res, Waco, TX 76798 USA
关键词
sediment-water interface; bacteria; carbon substrates; stratified reservoir; Biolog EcoPlates; DISSOLVED ORGANIC-MATTER; BACTERIOPLANKTON; ASSOCIATION; DEGRADATION; CONSUMPTION; ABUNDANCE; PROFILES; DYNAMICS; MARINE; CYCLE;
D O I
10.1007/s10750-006-0476-6
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
Sediment-water interfaces (SWIs) in lakes and reservoirs harbor diverse assemblages of heterotrophic bacteria that influence organic matter cycling. Seasonal reservoir mixing and stratification affect the rate and type of dissolved organic carbon (DOC) utilized by SWI bacteria, however these seasonal carbon utilization dynamics remain poorly understood. We conducted an exploratory multi-seasonal study using Biolog EcoPlates to measure SWI bacterial carbon substrate utilization rates (CSURs) and patterns in a monomictic eutrophic reservoir. Principal components analysis (PCA) was used to elucidate seasonal CSUR variation. Carbohydrate utilization was greatest during early (onset of) stratification and also was high during winter mixing. Amino acid utilization was greatest during late (prolonged) stratification. Carboxylic acids had greatest utilization during late stratification, but also had moderate to high utilization during all other seasons. Amines and polymers exhibited moderate utilization during all seasons. We related seasonal variation in these CSURs to SWI bacterial abundance, temperature, dissolved oxygen, and redox potential. Collectively these environmental variables accounted for 49.4-62.3% of the total substrate utilization variance by season. Several individual substrate CSURs were significantly (P < 0.05) positively and/or negatively correlated with individual environmental variables, with L-asparagine and putrescine exhibiting significant positive and negative correlations with every measured environmental variable. Lastly, seasonal changes in CSURs corresponded to various changes in SWI bacterial assemblage composition, with highest similarities among early stratification and autumnal overturn assemblages and lowest similarities among late stratification and winter mixing assemblages.
引用
收藏
页码:43 / 56
页数:14
相关论文
共 48 条
[11]   Comparison of two kinds of Biolog microplates (GN and ECO) in their ability to distinguish among aquatic microbial communities [J].
Choi, KH ;
Dobbs, FC .
JOURNAL OF MICROBIOLOGICAL METHODS, 1999, 36 (03) :203-213
[12]   Key issues concerning biolog use for aerobic and anaerobic freshwater bacterial community-level physiological profiling [J].
Christian, Bradley W. ;
Lind, Owen T. .
INTERNATIONAL REVIEW OF HYDROBIOLOGY, 2006, 91 (03) :257-268
[13]  
Christian BW, 2002, INT VER THEOR ANGEW, V28, P705
[14]   BACTERIAL SECONDARY PRODUCTION IN OXIC AND ANOXIC FRESH-WATERS [J].
COLE, JJ ;
PACE, ML .
LIMNOLOGY AND OCEANOGRAPHY, 1995, 40 (06) :1019-1027
[15]  
Croce N.D., 1997, HYDROBIOLOGIA, V363, P241
[16]   The carbon cycle and biogeochemical dynamics in lake sediments [J].
Dean, WE .
JOURNAL OF PALEOLIMNOLOGY, 1999, 21 (04) :375-393
[17]   Biochemical degradation of algal fatty acids in oxic and anoxic sediment-seawater interface systems: effects of structural association and relative roles of aerobic and anaerobic bacteria [J].
Ding, HB ;
Sun, MY .
MARINE CHEMISTRY, 2005, 93 (01) :1-19
[18]   A model of microbial activity in lake sediments in response to periodic water-column mixing [J].
Gantzer, CJ ;
Stefan, HG .
WATER RESEARCH, 2003, 37 (12) :2833-2846
[19]  
Garland JL, 1997, FEMS MICROBIOL ECOL, V24, P289, DOI 10.1016/S0168-6496(97)00061-5
[20]   Seasonal patterns of substrate utilization by bacterioplankton: case studies in four temperate lakes of different latitudes [J].
Grover, JP ;
Chrzanowski, TH .
AQUATIC MICROBIAL ECOLOGY, 2000, 23 (01) :41-54