Causes and consequences of biotic homogenization in freshwater ecosystems

被引:158
作者
Petsch, Danielle Katharine [1 ]
机构
[1] Univ Fed Goias, Posgrad Ecol & Evolucao, CP 131, BR-74001970 Goiania, Go, Brazil
关键词
Aquatic communities; Beta diversity; Biological invasions; Dams; Similarity; FISH ASSEMBLAGES; BETA DIVERSITY; CLIMATE-CHANGE; BIODIVERSITY; NESTEDNESS; TURNOVER; FAUNAS; DISTINCTIVENESS; BIOGEOGRAPHY; LANDSCAPES;
D O I
10.1002/iroh.201601850
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
Biotic homogenization goes beyond the increase in taxonomic similarity among communities. It also involves the loss of biological differences in any organizational level (e.g., populations or communities) in terms of functional, taxonomic or genetic features. There are many ways to measure biotic homogenization, and the results depend on temporal and spatial scales, the biological group, and the richness of the communities. In freshwater ecosystems, the main investigated causes of biotic homogenization correspond to the introduction of non-native species, damming, and changes in land use. However, other natural and anthropogenic causes also increase similarity among aquatic biota, such as climatic change, changes in productivity, and flood and drought events. The consequences of biotic homogenization in freshwater ecosystems are less explored than its causes, despite its severe implications, such as lesser resistant/resilient communities, loss of ecosystem functions, and higher vulnerability to diseases. Finally, biotic homogenization is a complex process that requires attention in conservation strategies, especially because forecasts suggest that freshwater biotas will continue to become more homogeneous in the future.
引用
收藏
页码:113 / 122
页数:10
相关论文
共 75 条
  • [1] The geography of climate change: implications for conservation biogeography
    Ackerly, D. D.
    Loarie, S. R.
    Cornwell, W. K.
    Weiss, S. B.
    Hamilton, H.
    Branciforte, R.
    Kraft, N. J. B.
    [J]. DIVERSITY AND DISTRIBUTIONS, 2010, 16 (03) : 476 - 487
  • [2] Fish assemblages in Neotropical reservoirs: Colonization patterns, impacts and management
    Agostinho, Angelo A.
    Gomes, Luiz C.
    Santos, Natalia C. L.
    Ortega, Jean C. G.
    Pelicice, Fernando M.
    [J]. FISHERIES RESEARCH, 2016, 173 : 26 - 36
  • [3] Agostinho Angelo Antonio, 2004, Ecohydrology & Hydrobiology, V4, P267
  • [4] Reservoir Fish Stocking: When One Plus One May Be Less Than Two
    Agostinho, Angelo Antonio
    Pelicice, Fernando Mayer
    Gomes, Luiz Carlos
    Julio, Horacio Ferreira, Jr.
    [J]. NATUREZA & CONSERVACAO, 2010, 8 (02): : 103 - 111
  • [5] Landscapes and riverscapes: The influence of land use on stream ecosystems
    Allan, JD
    [J]. ANNUAL REVIEW OF ECOLOGY EVOLUTION AND SYSTEMATICS, 2004, 35 : 257 - 284
  • [6] Revealing a conservation challenge through partitioned long-term beta diversity: increasing turnover and decreasing nestedness of boreal lake metacommunities
    Angeler, David G.
    [J]. DIVERSITY AND DISTRIBUTIONS, 2013, 19 (07) : 772 - 781
  • [7] Beta diversity as a tool for determining priority streams for management actions
    Antao Barboza, Luis Gabriel
    Mormul, Roger Paulo
    Higuti, Janet
    [J]. WATER SCIENCE AND TECHNOLOGY, 2015, 71 (10) : 1429 - 1435
  • [8] Distinguishing between turnover and nestedness in the quantification of biotic homogenization
    Baeten, Lander
    Vangansbeke, Pieter
    Hermy, Martin
    Peterken, George
    Vanhuyse, Kathleen
    Verheyen, Kris
    [J]. BIODIVERSITY AND CONSERVATION, 2012, 21 (06) : 1399 - 1409
  • [9] The spatial scaling of beta diversity
    Barton, Philip S.
    Cunningham, Saul A.
    Manning, Adrian D.
    Gibb, Heloise
    Lindenmayer, David B.
    Didham, Raphael K.
    [J]. GLOBAL ECOLOGY AND BIOGEOGRAPHY, 2013, 22 (06): : 639 - 647
  • [10] Partitioning the turnover and nestedness components of beta diversity
    Baselga, Andres
    [J]. GLOBAL ECOLOGY AND BIOGEOGRAPHY, 2010, 19 (01): : 134 - 143