The scale-dependent importance of habitat factors and dispersal limitation in structuring Great Lakes shoreline plant communities

被引:22
作者
Girdler, E. Binney [1 ]
Barrie, Benjamin T. Connor [1 ]
机构
[1] Kalamazoo Coll, Dept Biol, Kalamazoo, MI 49006 USA
关键词
dispersal limitation; distance decay; habitat turnover; neutral theory; niche theory; scale;
D O I
10.1007/s11258-008-9396-z
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Niche-based and neutral models of community structure posit distinct mechanisms underlying patterns in community structure; correlation between species' distributions and habitat factors points to niche assembly while spatial pattern independent of habitat suggests neutral assembly via dispersal limitation. The challenge is to disentangle the relative contributions when both processes are operating, and to determine the scales at which each is important. We sampled shoreline plant communities on an island in Lake Michigan, varying the extent and the grain of sampling, and used both distance-based correlation methods and variance partitioning to quantify the proportion of the variation in plant species composition that was attributable to habitat factors and to spatial configuration independent of habitat. Our results were highly scale dependent. We found no distance decay of plant community similarity at the island scale (1-33 km). All of the explained variation (32%) in species composition among samples at this scale was attributed to habitat factors. However, at a site intensively sampled at a smaller scale (5-1,200 m), similarity of species composition did decay with distance. Using a coarse sampling grain (transects), habitat factors explained 40% of the variation, but the purely spatial component explained a comparable 22%. Analyzing plots within transects revealed variation in species composition that was still jointly determined by habitat and spatial factors (18 and 11% of the variance, respectively). For both grain sizes, most of the habitat component was spatially structured, reflecting an abrupt alongshore transition from sandy dunes to cobble beach. Space per se explained more variation in species composition at a second site where the habitat transition was more gradual; here, habitat acted as a less selective filter, allowing the signal of dispersal limitation to be detected more readily. We conclude that both adaptation to specific habitat factors and habitat-independent spatial position indicative of dispersal limitation determine plant species composition in this system. Our results support the prediction that dispersal limitation-a potentially, but not necessarily, neutral driver-is relatively more important at smaller scales.
引用
收藏
页码:211 / 223
页数:13
相关论文
共 44 条
[1]  
[Anonymous], 1916, Carnegie Institution of Washington
[2]   The co-distribution of species in relation to the neutral theory of community ecology [J].
Bell, G .
ECOLOGY, 2005, 86 (07) :1757-1770
[3]   The distribution of abundance in neutral communities [J].
Bell, G .
AMERICAN NATURALIST, 2000, 155 (05) :606-617
[4]   Dissecting the spatial structure of ecological data at multiple scales [J].
Borcard, D ;
Legendre, P ;
Avois-Jacquet, C ;
Tuomisto, H .
ECOLOGY, 2004, 85 (07) :1826-1832
[5]  
BORCARD D, 2004, SPACEMAKER2 USER GUI
[6]  
Borcard D, 1994, ENVIRON ECOL STAT, V1, P37, DOI 10.1007/BF00714196
[7]   Scale-dependent frequency distributions of plant species in dune slacks: Dispersal and niche limitation [J].
Bossuyt, B ;
Honnay, O ;
Hermy, M .
JOURNAL OF VEGETATION SCIENCE, 2004, 15 (03) :323-330
[8]   Causes of landscape-scale rarity in cobble beach plant communities [J].
Bruno, JF .
ECOLOGY, 2002, 83 (08) :2304-2314
[9]  
CASGRAIN P, 2001, R PACKAGE MULTIVARIA, P4
[10]   A spatially explicit neutral model of β-diversity in tropical forests [J].
Chave, J ;
Leigh, EG .
THEORETICAL POPULATION BIOLOGY, 2002, 62 (02) :153-168