Environmental variables drive differences in the beta diversity of dragonfly assemblages among urban stormwater ponds

被引:26
作者
Johansson, F. [1 ]
Bini, L. M. [2 ]
Coiffard, P. [1 ]
Svanback, R. [1 ]
Wester, J. [1 ]
Heino, J. [3 ]
机构
[1] Uppsala Univ, Dept Ecol & Genet, Anim Ecol, Norbyvagen 18D, S-75236 Uppsala, Sweden
[2] Univ Fed Goias, Dept Ecol, BR-74001970 Goiania, Go, Brazil
[3] Finnish Environm Inst, Freshwater Ctr, Paavo Havaksen Tie 3, FI-90570 Oulu, Finland
基金
瑞典研究理事会;
关键词
Beta diversity; Compositional dissimilarity; Environmental gradients; Generalised dissimilarity modelling; Geographic distance; Odonata; Urban ecology; BIODIVERSITY CONSERVATION; COMMUNITY STRUCTURE; SPECIES RICHNESS; SITE SELECTION; LAND-USE; ODONATA; REPLACEMENT; VEGETATION; MACROINVERTEBRATES; NESTEDNESS;
D O I
10.1016/j.ecolind.2019.105529
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Stormwater ponds are beneficial to urban landscapes because these man-made systems can reduce the negative effects of flooding in urban areas and restrain the distribution of pollutants. In addition, these systems are especially important to maintain the biodiversity of urban landscapes. Here, we sampled a set of 18 stormwater ponds in the city of Uppsala in Sweden to test the relationship between beta diversity of adult dragonflies and environmental factors (local and land use variables). We analysed the total beta diversity and its two components: replacement and richness difference. We recorded 31 species of Odonata, comprising 61% of the Odonata species in the province of Uppland in Sweden. By itself, this result indicates the importance of stormwater ponds in contributing to biodiversity in urban areas. The richness difference component of beta diversity was higher than the replacement component. Results from generalized dissimilarly models indicated that the richness difference component was mainly related with pond area and total vegetation cover (aquatic vegetation plus vegetation surrounding ponds). Focusing on different vegetation variables separately, models indicated that the beta diversity components were significantly correlated with percentage cover of floating algae scums, emergent aquatic macrophytes and tall shore vegetation. These results are consistent with what is known about the ecology of dragonflies, including the importance of aerial plant structures for perching, shelter from terrestrial and aquatic predators, and for providing oviposition sites. We also found that the stormwater ponds harboured a large part of the regional species pool. These systems are therefore important havens of biodiversity in urban landscapes. Our results also indicate that the management of different types of vegetation is key to maximize the potential of these systems in maintaining regional biodiversity.
引用
收藏
页数:9
相关论文
共 47 条
  • [21] Stochastic species loss and dispersal limitation drive patterns of spatial and temporal beta diversity of fish assemblages in tropical agroecosystem streams
    Zeni, Jaquelini O.
    Hoeinghaus, David J.
    Roa-Fuentes, Camilo A.
    Casatti, Lilian
    HYDROBIOLOGIA, 2020, 847 (18) : 3829 - 3843
  • [22] Environmental constraints on the compositional and phylogenetic beta-diversity of tropical forest snake assemblages
    Moura, Mario R.
    Costa, Henrique C.
    Argolo, Antonio J. S.
    Jetz, Walter
    JOURNAL OF ANIMAL ECOLOGY, 2017, 86 (05) : 1192 - 1204
  • [23] Beta diversity of stream fish assemblages: partitioning variation between spatial and environmental factors
    Zbinden, Zachery D.
    Matthews, William J.
    FRESHWATER BIOLOGY, 2017, 62 (08) : 1460 - 1471
  • [24] Environmental heterogeneity drives macrophyte beta diversity patterns in permanent and temporary ponds in an agricultural landscape
    Margarita Fernández-Aláez
    Francisco García-Criado
    Jorge García-Girón
    Felisa Santiago
    Camino Fernández-Aláez
    Aquatic Sciences, 2020, 82
  • [25] Scale-dependent influences of environmental, historical, and spatial processes on taxonomic and functional beta diversity of Japanese bat assemblages
    Maki, Takahiro
    Sannomiya, Nozomi
    Hirao, Toshihide
    Fukui, Dai
    ECOLOGY AND EVOLUTION, 2024, 14 (04):
  • [26] Relative influence of spatial over environmental and historical processes on the taxonomic and phylogenetic beta diversity of Neotropical phyllostomid bat assemblages
    Varzinczak, Luiz H.
    Lima, Camila S.
    Moura, Mauricio O.
    Passos, Fernando C.
    JOURNAL OF BIOGEOGRAPHY, 2018, 45 (03) : 617 - 627
  • [27] Bacterial community assembly in activated sludge: mapping beta diversity across environmental variables
    Isazadeh, Siavash
    Jauffur, Shameem
    Frigon, Dominic
    MICROBIOLOGYOPEN, 2016, 5 (06): : 1050 - 1060
  • [28] Temporal Variation of Fish Diversity and Assemblages and their Associations to Environmental Variables in the Mangrove of Qinzhou Harbor, Guangxi Province, China
    Huang, Liangliang
    Huang, Delian
    Wu, Zhiqiang
    Kang, Bin
    Chen, Zhongbing
    TURKISH JOURNAL OF FISHERIES AND AQUATIC SCIENCES, 2016, 16 (02) : 297 - 310
  • [29] Scorpion assemblages in threatened Brazilian forests: The role of environmental factors in explaining beta-diversity patterns
    de Araujo Lira, Andre Felipe
    de Moura, Geraldo Jorge Barbosa
    Foerster, Stenio Italo Araujo
    INSECT CONSERVATION AND DIVERSITY, 2024, 17 (01) : 128 - 138
  • [30] Littoral species diversity and biomass: concordance among organismal groups and the effects of environmental variables
    Kimmo T. Tolonen
    Ismo J. Holopainen
    Heikki Hämäläinen
    Minna Rahkola-Sorsa
    Pasi Ylöstalo
    Krista Mikkonen
    Juha Karjalainen
    Biodiversity & Conservation, 2005, 14 : 961 - 980