Habitat suitability modelling to correlate gene flow with landscape connectivity

Landscape connectivity is important in designing corridor and reserve networks. Combining genetic distances among individuals with least-cost path (LCP) modelling helps to correlate indirect measures of gene flow with landscape connectivity. Applicability of LCP modelling, however, is reduced if kno...

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Published inLandscape ecology Vol. 23; no. 8; pp. 989 - 1000
Main Authors Wang, Yu-Huang, Yang, Kuoh-Cheng, Bridgman, Cara Lin, Lin, Liang-Kong
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.10.2008
Springer
Springer Nature B.V
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ISSN0921-2973
1572-9761
DOI10.1007/s10980-008-9262-3

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Abstract Landscape connectivity is important in designing corridor and reserve networks. Combining genetic distances among individuals with least-cost path (LCP) modelling helps to correlate indirect measures of gene flow with landscape connectivity. Applicability of LCP modelling, however, is reduced if knowledge on dispersal pathways or routes is lacking. Therefore, we integrated habitat suitability modelling into LCP analysis to avoid the subjectivity common in LCP analyses lacking knowledge on dispersal pathways or routes. We used presence-only data and ecological niche factor analysis to model habitat suitability for the spiny rat, Niviventer coninga , in a fragmented landscape of western Taiwan. We adapted the resultant habitat suitability map for incorporation into LCP analyses. Slightly increased Mantel correlations indicated that a class-weighted suitability map better explained genetic distances among individuals than did geographical distances. The integration of habitat suitability modelling into LCP analysis can thus generate information on distribution of suitable habitats, on potential routes of dispersal, for placement of corridors, and evaluate landscape connectivity.
AbstractList Landscape connectivity is important in designing corridor and reserve networks. Combining genetic distances among individuals with least-cost path (LCP) modelling helps to correlate indirect measures of gene flow with landscape connectivity. Applicability of LCP modelling, however, is reduced if knowledge on dispersal pathways or routes is lacking. Therefore, we integrated habitat suitability modelling into LCP analysis to avoid the subjectivity common in LCP analyses lacking knowledge on dispersal pathways or routes. We used presence-only data and ecological niche factor analysis to model habitat suitability for the spiny rat, Niviventer coninga, in a fragmented landscape of western Taiwan. We adapted the resultant habitat suitability map for incorporation into LCP analyses. Slightly increased Mantel correlations indicated that a class-weighted suitability map better explained genetic distances among individuals than did geographical distances. The integration of habitat suitability modelling into LCP analysis can thus generate information on distribution of suitable habitats, on potential routes of dispersal, for placement of corridors, and evaluate landscape connectivity.
Landscape connectivity is important in designing corridor and reserve networks. Combining genetic distances among individuals with least-cost path (LCP) modelling helps to correlate indirect measures of gene flow with landscape connectivity. Applicability of LCP modelling, however, is reduced if knowledge on dispersal pathways or routes is lacking. Therefore, we integrated habitat suitability modelling into LCP analysis to avoid the subjectivity common in LCP analyses lacking knowledge on dispersal pathways or routes. We used presence-only data and ecological niche factor analysis to model habitat suitability for the spiny rat, Niviventer coninga, in a fragmented landscape of western Taiwan. We adapted the resultant habitat suitability map for incorporation into LCP analyses. Slightly increased Mantel correlations indicated that a class-weighted suitability map better explained genetic distances among individuals than did geographical distances. The integration of habitat suitability modelling into LCP analysis can thus generate information on distribution of suitable habitats, on potential routes of dispersal, for placement of corridors, and evaluate landscape connectivity. [PUBLICATION ABSTRACT]
Landscape connectivity is important in designing corridor and reserve networks. Combining genetic distances among individuals with least-cost path (LCP) modelling helps to correlate indirect measures of gene flow with landscape connectivity. Applicability of LCP modelling, however, is reduced if knowledge on dispersal pathways or routes is lacking. Therefore, we integrated habitat suitability modelling into LCP analysis to avoid the subjectivity common in LCP analyses lacking knowledge on dispersal pathways or routes. We used presence-only data and ecological niche factor analysis to model habitat suitability for the spiny rat, Niviventer coninga , in a fragmented landscape of western Taiwan. We adapted the resultant habitat suitability map for incorporation into LCP analyses. Slightly increased Mantel correlations indicated that a class-weighted suitability map better explained genetic distances among individuals than did geographical distances. The integration of habitat suitability modelling into LCP analysis can thus generate information on distribution of suitable habitats, on potential routes of dispersal, for placement of corridors, and evaluate landscape connectivity.
Author Yang, Kuoh-Cheng
Lin, Liang-Kong
Bridgman, Cara Lin
Wang, Yu-Huang
Author_xml – sequence: 1
  givenname: Yu-Huang
  surname: Wang
  fullname: Wang, Yu-Huang
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  givenname: Kuoh-Cheng
  surname: Yang
  fullname: Yang, Kuoh-Cheng
  organization: Department of Ecology, Providence University
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  givenname: Cara Lin
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  givenname: Liang-Kong
  surname: Lin
  fullname: Lin, Liang-Kong
  email: lklin@thu.edu.tw
  organization: Department of Life Science, Tunghai University
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Issue 8
Keywords Least-cost path modelling
k-Fold cross validation
Landscape genetics
Ecological niche factor analysis
Continuous Boyce index
Presence-only data
AFLPs
Costs
Landscape
Continuous
Environmental factor
Habitat suitability
AFLPs . Continuous Boyce index
Modeling
Ecological connectivity
k-Fold cross validation . Landscape genetics . Least-cost path modelling . Niviventer coninga . Presence-only data
Gene flow
Ecological niche
Genetics
Amplified fragment length polymorphism marker
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Snippet Landscape connectivity is important in designing corridor and reserve networks. Combining genetic distances among individuals with least-cost path (LCP)...
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springer
SourceType Aggregation Database
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Enrichment Source
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StartPage 989
SubjectTerms Animal, plant and microbial ecology
Applied ecology
Biological and medical sciences
Biomedical and Life Sciences
Correlation
Dispersal
Ecological niches
Ecology
Environmental Management
Factor analysis
Fundamental and applied biological sciences. Psychology
Gene flow
General aspects
General aspects. Techniques
Genetic distance
Habitats
Landscape Ecology
Landscape/Regional and Urban Planning
landscapes
Life Sciences
Macroecology
Methods and techniques (sampling, tagging, trapping, modelling...)
Modelling
Nature Conservation
rats
Research Article
reserve networks
Rodents
Sustainable Development
Taiwan
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Title Habitat suitability modelling to correlate gene flow with landscape connectivity
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