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 in | Landscape ecology Vol. 23; no. 8; pp. 989 - 1000 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Dordrecht
Springer Netherlands
01.10.2008
Springer Springer Nature B.V |
Subjects | |
Online Access | Get full text |
ISSN | 0921-2973 1572-9761 |
DOI | 10.1007/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. |
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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 organization: Department of Life Science, Tunghai University – sequence: 2 givenname: Kuoh-Cheng surname: Yang fullname: Yang, Kuoh-Cheng organization: Department of Ecology, Providence University – sequence: 3 givenname: Cara Lin surname: Bridgman fullname: Bridgman, Cara Lin organization: Department of Life Science, Tunghai University – sequence: 4 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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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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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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