Back to Search Start Over

Global patterns of kelp forest change over the past half-century.

Authors :
Krumhansl, Kira A
Krumhansl, Kira A
Okamoto, Daniel K
Rassweiler, Andrew
Novak, Mark
Bolton, John J
Cavanaugh, Kyle C
Connell, Sean D
Johnson, Craig R
Konar, Brenda
Ling, Scott D
Micheli, Fiorenza
Norderhaug, Kjell M
Pérez-Matus, Alejandro
Sousa-Pinto, Isabel
Reed, Daniel C
Salomon, Anne K
Shears, Nick T
Wernberg, Thomas
Anderson, Robert J
Barrett, Nevell S
Buschmann, Alejandro H
Carr, Mark H
Caselle, Jennifer E
Derrien-Courtel, Sandrine
Edgar, Graham J
Edwards, Matt
Estes, James A
Goodwin, Claire
Kenner, Michael C
Kushner, David J
Moy, Frithjof E
Nunn, Julia
Steneck, Robert S
Vásquez, Julio
Watson, Jane
Witman, Jon D
Byrnes, Jarrett EK
Krumhansl, Kira A
Krumhansl, Kira A
Okamoto, Daniel K
Rassweiler, Andrew
Novak, Mark
Bolton, John J
Cavanaugh, Kyle C
Connell, Sean D
Johnson, Craig R
Konar, Brenda
Ling, Scott D
Micheli, Fiorenza
Norderhaug, Kjell M
Pérez-Matus, Alejandro
Sousa-Pinto, Isabel
Reed, Daniel C
Salomon, Anne K
Shears, Nick T
Wernberg, Thomas
Anderson, Robert J
Barrett, Nevell S
Buschmann, Alejandro H
Carr, Mark H
Caselle, Jennifer E
Derrien-Courtel, Sandrine
Edgar, Graham J
Edwards, Matt
Estes, James A
Goodwin, Claire
Kenner, Michael C
Kushner, David J
Moy, Frithjof E
Nunn, Julia
Steneck, Robert S
Vásquez, Julio
Watson, Jane
Witman, Jon D
Byrnes, Jarrett EK
Source :
Proceedings of the National Academy of Sciences of the United States of America; vol 113, iss 48, 13785-13790; 0027-8424
Publication Year :
2016

Abstract

Kelp forests (Order Laminariales) form key biogenic habitats in coastal regions of temperate and Arctic seas worldwide, providing ecosystem services valued in the range of billions of dollars annually. Although local evidence suggests that kelp forests are increasingly threatened by a variety of stressors, no comprehensive global analysis of change in kelp abundances currently exists. Here, we build and analyze a global database of kelp time series spanning the past half-century to assess regional and global trends in kelp abundances. We detected a high degree of geographic variation in trends, with regional variability in the direction and magnitude of change far exceeding a small global average decline (instantaneous rate of change = -0.018 y-1). Our analysis identified declines in 38% of ecoregions for which there are data (-0.015 to -0.18 y-1), increases in 27% of ecoregions (0.015 to 0.11 y-1), and no detectable change in 35% of ecoregions. These spatially variable trajectories reflected regional differences in the drivers of change, uncertainty in some regions owing to poor spatial and temporal data coverage, and the dynamic nature of kelp populations. We conclude that although global drivers could be affecting kelp forests at multiple scales, local stressors and regional variation in the effects of these drivers dominate kelp dynamics, in contrast to many other marine and terrestrial foundation species.

Details

Database :
OAIster
Journal :
Proceedings of the National Academy of Sciences of the United States of America; vol 113, iss 48, 13785-13790; 0027-8424
Notes :
application/pdf, Proceedings of the National Academy of Sciences of the United States of America vol 113, iss 48, 13785-13790 0027-8424
Publication Type :
Electronic Resource
Accession number :
edsoai.on1378686580
Document Type :
Electronic Resource