Invasion ecology of wild pigs (Sus scrofa) in Florida, USA: the role of humans in the expansion and colonization of an invasive wild ungulate

Wild pigs ( Sus scrofa ) are the most widely distributed invasive wild ungulate in the United States, yet the factors that influence wild pig dispersal and colonization at the regional level are poorly understood. Our objective was to use a population genetic approach to describe patterns of dispers...

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Published inBiological invasions Vol. 20; no. 7; pp. 1865 - 1880
Main Authors Hernández, Felipe A., Parker, Brandon M., Pylant, Cortney L., Smyser, Timothy J., Piaggio, Antoinette J., Lance, Stacey L., Milleson, Michael P., Austin, James D., Wisely, Samantha M.
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.07.2018
Springer Nature B.V
Springer Nature
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Abstract Wild pigs ( Sus scrofa ) are the most widely distributed invasive wild ungulate in the United States, yet the factors that influence wild pig dispersal and colonization at the regional level are poorly understood. Our objective was to use a population genetic approach to describe patterns of dispersal and colonization among populations to gain a greater understanding of the invasion process contributing to the expansion of this species. We used 52 microsatellite loci to produce individual genotypes for 482 swine sampled at 39 locations between 2014 and 2016. Our data revealed the existence of genetically distinct subpopulations ( F ST  = 0.1170, p  < 0.05). We found evidence of both fine-scale subdivision among the sampling locations, as well as evidence of long term genetic isolation. Several locations exhibited significant admixture (interbreeding) suggesting frequent mixing of individuals among locations; up to 14% of animals were immigrants from other populations. This pattern of admixture suggested successive rounds of human-assisted translocation and subsequent expansion across Florida. We also found evidence of genetically distinct populations that were isolated from nearby populations, suggesting recent introduction by humans. In addition, proximity to wild pig holding facilities was associated with higher migration rates and admixture, likely due to the escape or release of animals. Taken together, these results suggest that human-assisted movement plays a major role in the ecology and rapid population growth of wild pigs in Florida.
AbstractList Wild pigs (Sus scrofa) are the most widely distributed invasive wild ungulate in the United States, yet the factors that influence wild pig dispersal and colonization at the regional level are poorly understood. Our objective was to use a population genetic approach to describe patterns of dispersal and colonization among populations to gain a greater understanding of the invasion process contributing to the expansion of this species. We used 52 microsatellite loci to produce individual genotypes for 482 swine sampled at 39 locations between 2014 and 2016. Our data revealed the existence of genetically distinct subpopulations (FST = 0.1170, p < 0.05). We found evidence of both fine-scale subdivision among the sampling locations, as well as evidence of long term genetic isolation. Several locations exhibited significant admixture (interbreeding) suggesting frequent mixing of individuals among locations; up to 14% of animals were immigrants from other populations. This pattern of admixture suggested successive rounds of human-assisted translocation and subsequent expansion across Florida. We also found evidence of genetically distinct populations that were isolated from nearby populations, suggesting recent introduction by humans. In addition, proximity to wild pig holding facilities was associated with higher migration rates and admixture, likely due to the escape or release of animals. Taken together, these results suggest that human-assisted movement plays a major role in the ecology and rapid population growth of wild pigs in Florida.
Wild pigs (Sus scrofa) are the most widely distributed invasive wild ungulate in the United States, yet the factors that influence wild pig dispersal and colonization at the regional level are poorly understood. Our objective was to use a population genetic approach to describe patterns of dispersal and colonization among populations to gain a greater understanding of the invasion process contributing to the expansion of this species. We used 52 microsatellite loci to produce individual genotypes for 482 swine sampled at 39 locations between 2014 and 2016. Our data revealed the existence of genetically distinct subpopulations (F ST = 0.1170, p < 0.05). We found evidence of both fine-scale subdivision among the sampling locations, as well as evidence of long term genetic isolation. Several locations exhibited significant admixture (interbreeding) suggesting frequent mixing of individuals among locations; up to 14% of animals were immigrants from other populations. This pattern of admixture suggested successive rounds of human-assisted translocation and subsequent expansion across Florida. We also found evidence of genetically distinct populations that were isolated from nearby populations, suggesting recent introduction by humans. In addition, proximity to wild pig holding facilities was associated with higher migration rates and admixture, likely due to the escape or release of animals. Taken together, these results suggest that human-assisted movement plays a major role in the ecology and rapid population growth of wild pigs in Florida.
Wild pigs ( Sus scrofa ) are the most widely distributed invasive wild ungulate in the United States, yet the factors that influence wild pig dispersal and colonization at the regional level are poorly understood. Our objective was to use a population genetic approach to describe patterns of dispersal and colonization among populations to gain a greater understanding of the invasion process contributing to the expansion of this species. We used 52 microsatellite loci to produce individual genotypes for 482 swine sampled at 39 locations between 2014 and 2016. Our data revealed the existence of genetically distinct subpopulations ( F ST  = 0.1170, p  < 0.05). We found evidence of both fine-scale subdivision among the sampling locations, as well as evidence of long term genetic isolation. Several locations exhibited significant admixture (interbreeding) suggesting frequent mixing of individuals among locations; up to 14% of animals were immigrants from other populations. This pattern of admixture suggested successive rounds of human-assisted translocation and subsequent expansion across Florida. We also found evidence of genetically distinct populations that were isolated from nearby populations, suggesting recent introduction by humans. In addition, proximity to wild pig holding facilities was associated with higher migration rates and admixture, likely due to the escape or release of animals. Taken together, these results suggest that human-assisted movement plays a major role in the ecology and rapid population growth of wild pigs in Florida.
Author Wisely, Samantha M.
Piaggio, Antoinette J.
Parker, Brandon M.
Pylant, Cortney L.
Smyser, Timothy J.
Milleson, Michael P.
Lance, Stacey L.
Austin, James D.
Hernández, Felipe A.
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  organization: United States Department of Agriculture, Animal and Plant Health Inspection Service, Wildlife Services, National Wildlife Research Center
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  organization: United States Department of Agriculture, Animal and Plant Health Inspection Service, Wildlife Services
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  givenname: James D.
  surname: Austin
  fullname: Austin, James D.
  organization: School of Natural Resources and Environment, University of Florida, Department of Wildlife Ecology and Conservation, University of Florida
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  givenname: Samantha M.
  orcidid: 0000-0003-1748-4518
  surname: Wisely
  fullname: Wisely, Samantha M.
  email: wisely@ufl.edu
  organization: School of Natural Resources and Environment, University of Florida, Department of Wildlife Ecology and Conservation, University of Florida
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Interbreeding
Human-assisted movement
Invasion ecology
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PublicationTitle Biological invasions
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SSID ssj0009705
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Snippet Wild pigs ( Sus scrofa ) are the most widely distributed invasive wild ungulate in the United States, yet the factors that influence wild pig dispersal and...
Wild pigs (Sus scrofa) are the most widely distributed invasive wild ungulate in the United States, yet the factors that influence wild pig dispersal and...
SourceID osti
proquest
crossref
springer
SourceType Open Access Repository
Aggregation Database
Publisher
StartPage 1865
SubjectTerms Animals
BASIC BIOLOGICAL SCIENCES
Biomedical and Life Sciences
Colonization
Developmental Biology
Dispersal
Dispersion
Ecology
Florida
Freshwater & Marine Ecology
Genetic isolation
Genotypes
Hogs
Human motion
human-assisted movement
Immigrants
immigration
interbreeding
invasion ecology
Life Sciences
Migration
Original Paper
Plant Sciences
Population genetics
Population growth
Subpopulations
Suidae
Sus scrofa
Swine
Translocation
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Title Invasion ecology of wild pigs (Sus scrofa) in Florida, USA: the role of humans in the expansion and colonization of an invasive wild ungulate
URI https://link.springer.com/article/10.1007/s10530-018-1667-6
https://www.proquest.com/docview/1993240286
https://www.osti.gov/servlets/purl/1499114
Volume 20
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