Biogeography of copepods in lakes and ponds of subarctic Québec, Canada

被引:0
作者
Kerrie M. Swadling
John A.E. Gibson
Reinhard Pienitz
Warwick F. Vincent
机构
[1] Université Laval,Centre d'Études Nordiques
[2] University of Tasmania,Kerrie Swadling, School of Zoology
来源
Hydrobiologia | 2001年 / 453-454卷
关键词
zooplankton; biogeography; dissolved organic carbon; dissolved inorganic carbon; pH; conductivity;
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中图分类号
学科分类号
摘要
We aimed to determine whether the copepod assemblages in lakes and ponds of northern Québec, Canada, were closer in composition to those found in southern Québec, or to those reported from the subarctic and arctic. Six calanoid and five cyclopoid species were identified from 37 ponds and lakes located in the region between 55° N and 59° N. Species diversity was generally low, ranging from 0 to 4 species per lake. Dominant species were Leptodiaptomus minutus and Acanthocyclops vernalis. The species assemblages showed high affinity with those found in forested regions of southern Québec. Exceptions were Leptodiaptomus tyrrelli, previously only recorded west of Hudson Bay, and Hesperodiaptomus arcticus, hitherto recorded north of 58° N. Relationships between the lakes, species, and environmental variables were explored using multivariate analysis. Lakes situated along the coast and on two offshore islands clustered together and were characterised by higher conductivity and pH than those lakes located further inland. Leptodiaptomus tyrrelli was common in these coastal lakes. Canonical correspondence analysis revealed statistically significant relationships between copepod distributions and conductivity, dissolved organic carbon and pH. These three variables accounted for 70% of the variation in the species' distribution.
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页码:341 / 350
页数:9
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共 57 条
[1]  
Allard M.(1983)La dynamique littorale des iles Manitounouk durant l'Holocè ne Zeitschrift fur Geomorphologie, Supplementband 47 61-95
[2]  
Tremblay G.(1965)Predation, body size, and composition of plankton Science 150 28-35
[3]  
Brooks J. L.(1980)Distribution and zoogeography of planktonic crustaceans and dipterans in glaciated eastern North America Can. J. Zool. 58 1355-1387
[4]  
Dodson S. I.(1994)Littoral freshwater copepods of northwestern North America: Northern British Columbia Verh. int. Ver. Limnol. 25 2421-2431
[5]  
Carter J. C. H.(1992)Predicting crustacean zooplankton species richness Limnol. Oceanogr. 37 848-856
[6]  
Dadswell M. J.(1987)Late Wisconsinan and Holocene history of the Laurentide Ice Sheet Géogr. phys. Quat. 41 237-263
[7]  
Roff J. C.(1999)Diatomées lacustres de Jamésie-Hudsonie (Québec) et modè le de reconstitution des concentrations de carbone organique dissous Écoscience 6 603-620
[8]  
Sprules W. G.(1979)The effect of temperature on carotenoid photoprotection in the copepod Comp. Biochem. Physiol. 62A 445-448
[9]  
Chengalath R.(1986)Patterns in the composition of Arctic tundra pond microcrustacean communities Can. J. Fish. aquat. Sci. 43 1416-1425
[10]  
Shih C.(1987)The decay and disappearance of the Late Wisconsin ice sheet in the Ungava peninsula, northern Québec, Canada Arctic and Alpine Research 19 109-126