Reconstructing changes in macrophyte cover in lakes across the northeastern United States based on sedimentary diatom assemblages

被引:25
作者
Vermaire, Jesse C. [1 ]
Gregory-Eaves, Irene [1 ]
机构
[1] McGill Univ, Dept Biol, Montreal, PQ H3A 1B1, Canada
关键词
macrophyte cover; diatoms; paleolimnology; shallow lakes; logistic regression; transfer function;
D O I
10.1007/s10933-007-9125-y
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Macrophytes are a critical component of lake ecosystems affecting nutrient and contaminant cycling, food web structure, and lake biodiversity. The long-term (decades to centuries) dynamics of macrophyte cover are, however, poorly understood and no quantitative estimates exist for pre-industrial (pre-1850) macrophyte cover in northeastern North America. Using a 215 lake dataset, we tested if surface sediment diatom assemblages significantly differed among lakes that have sparse (< 10% cover; group 1), moderate (10-40% cover; group 2) or extensive (> 40% cover; group 3) macrophyte cover. Analysis of similarity indicated that the diatom assemblages of these a priori groups of macrophyte cover were significantly different from one another (i.e., difference between: groups 1 and 3, R statistic = 0.31, P < 0.001; groups 1 and 2, R statistic = 0.049, P < 0.01; groups 3 and 2, R statistic = 0.112, P < 0.001). We then developed an inference model for macrophyte cover from lakes classified as sparse or extensive cover (145 lakes) based on the surface sediment diatom assemblages, and applied this model using the top-bottom paleolimnological approach (i.e., comparison of recent sediments to pre-disturbance sediments). We used the second axis of our correspondence analysis, which significantly divided sparse and extensive macrophyte cover sites, as the independent variable in a logistic regression to predict macrophyte cover as either sparse or extensive. Cross validation, using 48 randomly chosen sites that were excluded from model development, indicated that our model accurately predicts macrophyte cover 79% of the time (r(2) = 0.32, P < 0.001). When applied to the top and bottom sediment samples, our model predicted that 12.5% of natural lakes and 22.4% of reservoirs in the dataset have undergone a >= 30% change in macrophyte cover. For the sites with an inferred change in macrophyte cover, the majority of natural lakes (64.3%) increased in cover, while the majority of reservoirs (87.5%) decreased in macrophyte cover. This study demonstrates that surface sediment diatom assemblages from profundal zones differ in lakes based on their macrophyte cover and that diatoms are useful indicators for quantitatively reconstructing changes in macrophyte cover.
引用
收藏
页码:477 / 490
页数:14
相关论文
共 44 条
[1]  
[Anonymous], 1997, Environmental monitoring and assessment program surface waters field operations manual for lakes
[2]   Relations between trophic state indicators and plant biomass in Florida lakes [J].
Bachmann, RW ;
Horsburgh, CA ;
Hoyer, MV ;
Mataraza, LK ;
Canfield, DE .
HYDROBIOLOGIA, 2002, 470 (1-3) :219-234
[3]   Aquatic macrophyte vegetation development in Krakenes Lake, western Norway, during the late-glacial and early-Holocene [J].
Birks, HH .
JOURNAL OF PALEOLIMNOLOGY, 2000, 23 (01) :7-19
[4]   Mechanisms for organic matter and phosphorus burial in sediments of a shallow, subtropical, macrophyte-dominated lake [J].
Brenner, M ;
Hodell, DA ;
Leyden, BW ;
Curtis, JH ;
Kenney, WF ;
Gu, BH ;
Newman, JM .
JOURNAL OF PALEOLIMNOLOGY, 2006, 35 (01) :129-148
[5]   Chironomid stratigraphy in the shallow and eutrophic Lake Sobygaard, Denmark: chironomid-macrophyte co-occurrence [J].
Brodersen, KF ;
Odgaard, BV ;
Vestergaard, O ;
Anderson, NJ .
FRESHWATER BIOLOGY, 2001, 46 (02) :253-267
[6]   EFFECTS OF SUBMERSED MACROPHYTES ON ECOSYSTEM PROCESSES [J].
CARPENTER, SR ;
LODGE, DM .
AQUATIC BOTANY, 1986, 26 (3-4) :341-370
[7]  
Clarke K.R., 2001, CHANGE MARINE COMMUN
[8]  
Davidson T. A., 2006, THESIS U COLL LONDON
[9]   A 250 year comparison of historical, macrofossil and pollen records of aquatic plants in a shallow lake [J].
Davidson, TA ;
Sayer, CD ;
Bennion, H ;
David, C ;
Rose, N ;
Wade, MP .
FRESHWATER BIOLOGY, 2005, 50 (10) :1671-1686
[10]   Calibration of littoral diatoms to water chemistry in standing fresh waters (Flanders, lower Belgium): Inference models for historical sediment assemblages [J].
Denys, Luc .
JOURNAL OF PALEOLIMNOLOGY, 2006, 35 (04) :763-787