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Latitude, temperature, and habitat complexity predict predation pressure in eelgrass beds across the Northern Hemisphere.

Authors :
Reynolds, Pamela L
Reynolds, Pamela L
Stachowicz, John J
Hovel, Kevin
Boström, Christoffer
Boyer, Katharyn
Cusson, Mathieu
Eklöf, Johan S
Engel, Friederike G
Engelen, Aschwin H
Eriksson, Britas Klemens
Fodrie, F Joel
Griffin, John N
Hereu, Clara M
Hori, Masakazu
Hanley, Torrance C
Ivanov, Mikhail
Jorgensen, Pablo
Kruschel, Claudia
Lee, Kun-Seop
McGlathery, Karen
Moksnes, Per-Olav
Nakaoka, Masahiro
O'Connor, Mary I
O'Connor, Nessa E
Orth, Robert J
Rossi, Francesca
Ruesink, Jennifer
Sotka, Erik E
Thormar, Jonas
Tomas, Fiona
Unsworth, Richard KF
Whalen, Matthew A
Duffy, J Emmett
Reynolds, Pamela L
Reynolds, Pamela L
Stachowicz, John J
Hovel, Kevin
Boström, Christoffer
Boyer, Katharyn
Cusson, Mathieu
Eklöf, Johan S
Engel, Friederike G
Engelen, Aschwin H
Eriksson, Britas Klemens
Fodrie, F Joel
Griffin, John N
Hereu, Clara M
Hori, Masakazu
Hanley, Torrance C
Ivanov, Mikhail
Jorgensen, Pablo
Kruschel, Claudia
Lee, Kun-Seop
McGlathery, Karen
Moksnes, Per-Olav
Nakaoka, Masahiro
O'Connor, Mary I
O'Connor, Nessa E
Orth, Robert J
Rossi, Francesca
Ruesink, Jennifer
Sotka, Erik E
Thormar, Jonas
Tomas, Fiona
Unsworth, Richard KF
Whalen, Matthew A
Duffy, J Emmett
Source :
Ecology; vol 99, iss 1, 29-35; 0012-9658
Publication Year :
2018

Abstract

Latitudinal gradients in species interactions are widely cited as potential causes or consequences of global patterns of biodiversity. However, mechanistic studies documenting changes in interactions across broad geographic ranges are limited. We surveyed predation intensity on common prey (live amphipods and gastropods) in communities of eelgrass (Zostera marina) at 48 sites across its Northern Hemisphere range, encompassing over 37° of latitude and four continental coastlines. Predation on amphipods declined with latitude on all coasts but declined more strongly along western ocean margins where temperature gradients are steeper. Whereas in situ water temperature at the time of the experiments was uncorrelated with predation, mean annual temperature strongly positively predicted predation, suggesting a more complex mechanism than simply increased metabolic activity at the time of predation. This large-scale biogeographic pattern was modified by local habitat characteristics; predation declined with higher shoot density both among and within sites. Predation rates on gastropods, by contrast, were uniformly low and varied little among sites. The high replication and geographic extent of our study not only provides additional evidence to support biogeographic variation in predation intensity, but also insight into the mechanisms that relate temperature and biogeographic gradients in species interactions.

Details

Database :
OAIster
Journal :
Ecology; vol 99, iss 1, 29-35; 0012-9658
Notes :
application/pdf, Ecology vol 99, iss 1, 29-35 0012-9658
Publication Type :
Electronic Resource
Accession number :
edsoai.on1367419425
Document Type :
Electronic Resource