volume 820 pages 153052

Perils of life on the edge: Climatic threats to global diversity patterns of wetland macroinvertebrates

LUIS B. EPELE 1
Marta G Grech 1
Emilio A. Williams Subiza 1
C. Stenert 2
Kyle Mclean 3
Hamish S. Greig 4, 5
Leonardo Maltchik 6
MATEUS MARQUES PIRES 2
Matthew S. Bird 7
Aurelie Boissezon 8
D. Boix 9
Eliane Demierre 8
Patricia García 10
Stéphanie Gascón 9
Michael P. Jeffries 11
Jamie M. Kneitel 12
OLGA LOSKUTOVA 13
Luz M. Manzo 1
GABRIELA MATALONI 14
MUSA C. MLAMBO 15
3
 
U.S. Geological Survey, Northern Prairie Wildlife Research Center, Jamestown, ND, USA
4
 
Rocky Mountain Biological Laboratory, Gothic, CO 81224, USA
14
 
Instituto de Investigación e Ingeniería Ambiental -IIIA, UNSAM, CONICET, Campus Miguelete, 1650 San Martín, Buenos Aires, Argentina
Publication typeJournal Article
Publication date2022-05-01
scimago Q1
wos Q1
SJR2.137
CiteScore16.4
Impact factor8.0
ISSN00489697, 18791026
Environmental Chemistry
Environmental Engineering
Pollution
Waste Management and Disposal
Abstract
Climate change is rapidly driving global biodiversity declines. How wetland macroinvertebrate assemblages are responding is unclear, a concern given their vital function in these ecosystems. Using a data set from 769 minimally impacted depressional wetlands across the globe (467 temporary and 302 permanent), we evaluated how temperature and precipitation (average, range, variability) affects the richness and beta diversity of 144 macroinvertebrate families. To test the effects of climatic predictors on macroinvertebrate diversity, we fitted generalized additive mixed-effects models (GAMM) for family richness and generalized dissimilarity models (GDMs) for total beta diversity. We found non-linear relationships between family richness, beta diversity, and climate. Maximum temperature was the main climatic driver of wetland macroinvertebrate richness and beta diversity, but precipitation seasonality was also important. Assemblage responses to climatic variables also depended on wetland water permanency. Permanent wetlands from warmer regions had higher family richness than temporary wetlands. Interestingly, wetlands in cooler and dry-warm regions had the lowest taxonomic richness, but both kinds of wetlands supported unique assemblages. Our study suggests that climate change will have multiple effects on wetlands and their macroinvertebrate diversity, mostly via increases in maximum temperature, but also through changes in patterns of precipitation. The most vulnerable wetlands to climate change are likely those located in warm-dry regions, where entire macroinvertebrate assemblages would be extirpated. Montane and high-latitude wetlands (i.e., cooler regions) are also vulnerable to climate change, but we do not expect entire extirpations at the family level.
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EPELE L. B. et al. Perils of life on the edge: Climatic threats to global diversity patterns of wetland macroinvertebrates // Science of the Total Environment. 2022. Vol. 820. p. 153052.
GOST all authors (up to 50) Copy
EPELE L. B., Grech M. G., Williams Subiza E. A., Stenert C., Mclean K., Greig H. S., Maltchik L., PIRES M. M., Bird M. S., Boissezon A., Boix D., Demierre E., García P., Gascón S., Jeffries M. P., Kneitel J., LOSKUTOVA O., Manzo L. M., MATALONI G., MLAMBO M. C. Perils of life on the edge: Climatic threats to global diversity patterns of wetland macroinvertebrates // Science of the Total Environment. 2022. Vol. 820. p. 153052.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.1016/j.scitotenv.2022.153052
UR - https://doi.org/10.1016/j.scitotenv.2022.153052
TI - Perils of life on the edge: Climatic threats to global diversity patterns of wetland macroinvertebrates
T2 - Science of the Total Environment
AU - EPELE, LUIS B.
AU - Grech, Marta G
AU - Williams Subiza, Emilio A.
AU - Stenert, C.
AU - Mclean, Kyle
AU - Greig, Hamish S.
AU - Maltchik, Leonardo
AU - PIRES, MATEUS MARQUES
AU - Bird, Matthew S.
AU - Boissezon, Aurelie
AU - Boix, D.
AU - Demierre, Eliane
AU - García, Patricia
AU - Gascón, Stéphanie
AU - Jeffries, Michael P.
AU - Kneitel, Jamie M.
AU - LOSKUTOVA, OLGA
AU - Manzo, Luz M.
AU - MATALONI, GABRIELA
AU - MLAMBO, MUSA C.
PY - 2022
DA - 2022/05/01
PB - Elsevier
SP - 153052
VL - 820
PMID - 35063522
SN - 0048-9697
SN - 1879-1026
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2022_EPELE,
author = {LUIS B. EPELE and Marta G Grech and Emilio A. Williams Subiza and C. Stenert and Kyle Mclean and Hamish S. Greig and Leonardo Maltchik and MATEUS MARQUES PIRES and Matthew S. Bird and Aurelie Boissezon and D. Boix and Eliane Demierre and Patricia García and Stéphanie Gascón and Michael P. Jeffries and Jamie M. Kneitel and OLGA LOSKUTOVA and Luz M. Manzo and GABRIELA MATALONI and MUSA C. MLAMBO},
title = {Perils of life on the edge: Climatic threats to global diversity patterns of wetland macroinvertebrates},
journal = {Science of the Total Environment},
year = {2022},
volume = {820},
publisher = {Elsevier},
month = {may},
url = {https://doi.org/10.1016/j.scitotenv.2022.153052},
pages = {153052},
doi = {10.1016/j.scitotenv.2022.153052}
}