Combining demography and genetic analysis to assess the population structure of an amphibian in a human-dominated landscape

被引:39
|
作者
Safner, Toni [1 ,3 ]
Miaud, Claude [2 ]
Gaggiotti, Oscar [1 ]
Decout, Samuel [1 ]
Rioux, Delphine [1 ]
Zundel, Stephanie [1 ]
Manel, Stephanie [1 ,4 ]
机构
[1] Univ Grenoble 1, CNRS, Lab Ecol Alpine, UMR 5553, F-38041 Grenoble 9, France
[2] Univ Savoie, CNRS, Lab Ecol Alpine, UMR 5553, F-73376 Le Bourget Du Lac, France
[3] Univ Zagreb, Dept Plant Breeding Genet & Biometr, Fac Agr, Zagreb 10000, Croatia
[4] Univ Aix Marseille 1, Lab Populat Environm Dev, UMR UP IRD 151, F-13331 Marseille 03, France
关键词
Landscape fragmentation; Connectivity; Dispersal; Genetic structure; Individual based simulation; RANA-TEMPORARIA AMPHIBIA; COMMON FROG; HABITAT FRAGMENTATION; FUNCTIONAL CONNECTIVITY; MICROSATELLITE LOCI; BAYESIAN-ANALYSIS; ROAD MORTALITY; CONSERVATION; ECOLOGY; FLOW;
D O I
10.1007/s10592-010-0129-1
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
In this article, we applied demographic and genetic approaches to assess how landscape features influence dispersal patterns and genetic structure of the common frog Rana temporaria in a landscape where anthropogenic perturbations are pervasive (urbanization and roads). We used a combination of GIS methods that integrate radiotracking and landscape configuration data, and simulation techniques in order to estimate the potential dispersal area around breeding patches. Additionally, genetic data provided indirect measures of dispersal and allowed to characterise the spatial genetic structure of ponds and the patterns of gene flow across the landscape. Although demographic simulations predicted six distinct groups of habitat patches within which movement can occur, genetic analyses suggested a different configuration. More precisely, BAPS5 spatial clustering method with ponds as the analysis unit detected five spatial clusters. Individual-based analyses were not able to detect significant genetic structure. We argue that (1) taking into account that each individual breeds in specific breeding patch allowed for better explanation of population functioning, (2) the discrepancy between direct (radiotracking) and indirect (genetic) estimates of subpopulations (breeding patches) is due to a recent landscape fragmentation (e.g. traffic increase). We discuss the future of this population in the face of increasing landscape fragmentation, focusing on the need for combining demographic and genetic approaches when evaluating the conservation status of population subjected to rapid landscape changes.
引用
收藏
页码:161 / 173
页数:13
相关论文
共 50 条
  • [1] Combining demography and genetic analysis to assess the population structure of an amphibian in a human-dominated landscape
    Toni Safner
    Claude Miaud
    Oscar Gaggiotti
    Samuel Decout
    Delphine Rioux
    Stéphanie Zundel
    Stéphanie Manel
    [J]. Conservation Genetics, 2011, 12 : 161 - 173
  • [2] Community structure of snakes in a human-dominated landscape
    Kjoss, VA
    Litvaitis, JA
    [J]. BIOLOGICAL CONSERVATION, 2001, 98 (03) : 285 - 292
  • [3] Landscape requirements of a primate population in a human-dominated environment
    Hoffman, Tali S.
    O'Riain, M. Justin
    [J]. FRONTIERS IN ZOOLOGY, 2012, 9
  • [4] Gene flow and population structure of a solitary top carnivore in a human-dominated landscape
    McManus, Jeannine S.
    Dalton, Desire L.
    Kotze, Antoinette
    Smuts, Bool
    Dickman, Amy
    Marshal, Jason P.
    Keith, Mark
    [J]. ECOLOGY AND EVOLUTION, 2015, 5 (02): : 335 - 344
  • [5] Landscape requirements of a primate population in a human-dominated environment
    Tali S Hoffman
    M Justin O'Riain
    [J]. Frontiers in Zoology, 9
  • [6] Genetic diversity and population structure of pumas (Puma concolor) in southeastern Brazil: implications for conservation in a human-dominated landscape
    Miotto, R. A.
    Cervini, M.
    Figueiredo, M. G.
    Begotti, R. A.
    Galetti, P. M., Jr.
    [J]. CONSERVATION GENETICS, 2011, 12 (06) : 1447 - 1455
  • [7] Ecohydrology in a human-dominated landscape
    Jackson, Robert B.
    Jobbagy, Esteban G.
    Nosetto, Marcelo D.
    [J]. ECOHYDROLOGY, 2009, 2 (03) : 383 - 389
  • [8] Genetic diversity and population structure of pumas (Puma concolor) in southeastern Brazil: implications for conservation in a human-dominated landscape
    R. A. Miotto
    M. Cervini
    M. G. Figueiredo
    R. A. Begotti
    P. M. Galetti
    [J]. Conservation Genetics, 2011, 12 : 1447 - 1455
  • [9] Habitat-specific demography and conservation of Geoffroy's cats in a human-dominated landscape
    Pereira, Javier A.
    Novaro, Andres J.
    [J]. JOURNAL OF MAMMALOGY, 2014, 95 (05) : 1025 - 1035
  • [10] Highlighting the effects of land-use change on a threatened amphibian in a human-dominated landscape
    Cayuela, Hugo
    Lambrey, Julie
    Vacher, Jean-Pierre
    Miaud, Claude
    [J]. POPULATION ECOLOGY, 2015, 57 (02) : 433 - 443