Genetic variation in the invasive avian parasite, <it>Philornis downsi </it>(Diptera, Muscidae) on the Galápagos archipelago

<p>Abstract</p> <p>Background</p> <p>Understanding the dispersal and genetic structure of invasive insects across islands is important for designing management plans that are appropriate at spatial and temporal scales. For invasive parasites, population dynamics are lar...

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Main Authors: Donnellan Steve, Gardner Michael G, Dudaniec Rachael Y, Kleindorfer Sonia
Format: Article
Language:English
Published: BMC 2008-07-01
Series:BMC Ecology
Online Access:http://www.biomedcentral.com/1472-6785/8/13
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spelling doaj-d775119d048e4c18be76d0efc7c4612d2021-09-02T11:54:35ZengBMCBMC Ecology1472-67852008-07-01811310.1186/1472-6785-8-13Genetic variation in the invasive avian parasite, <it>Philornis downsi </it>(Diptera, Muscidae) on the Galápagos archipelagoDonnellan SteveGardner Michael GDudaniec Rachael YKleindorfer Sonia<p>Abstract</p> <p>Background</p> <p>Understanding the dispersal and genetic structure of invasive insects across islands is important for designing management plans that are appropriate at spatial and temporal scales. For invasive parasites, population dynamics are largely determined by the distribution and density of their host species. The introduced parasitic fly, <it>Philornis downsi</it>, parasitises nestlings of endemic birds on all major islands of the Galápagos archipelago. The fly's high mortality and fitness impacts are of conservation concern for vulnerable and declining species of Darwin's finches. Using microsatellite data in Bayesian clustering and landscape genetic analyses, we examine gene flow and dispersal in <it>P. downsi </it>between three islands and across habitats (highlands, lowlands) and examine for the presence of population bottlenecks. We also examine variation at the mitochondrial gene <it>CO1 </it>across islands to establish if cryptic species were present.</p> <p>Results</p> <p>Both the mitochondrial and microsatellite data were consistent with there being a single species across islands. We found low genetic differentiation between islands and strong evidence for inter-island gene flow, or shared recent ancestry among individuals. Landscape genetic analysis identified two genetic clusters: one encompassing Santa Cruz and Isabela, and one on Floreana Island. There was no evidence of genetic differentiation between habitats and molecular variance was mainly attributable to within individuals. The combined <it>P. downsi </it>population was found to have undergone a population bottleneck.</p> <p>Conclusion</p> <p><it>Philornis downsi </it>populations have high connectivity within and between islands, with low levels of genetic differentiation between Floreana and the other two islands examined. The genetic bottleneck found across islands suggests there was a small founding population or few introduction events of <it>P. downsi</it>. The high dispersal capacity and wide habitat use of <it>P. downsi </it>highlights the significant threat that this parasite poses to the Galápagos avifauna. Our findings are relevant for assessing the viability of methods to control <it>P. downsi </it>on Galápagos, such as the sterile insect technique.</p> http://www.biomedcentral.com/1472-6785/8/13
collection DOAJ
language English
format Article
sources DOAJ
author Donnellan Steve
Gardner Michael G
Dudaniec Rachael Y
Kleindorfer Sonia
spellingShingle Donnellan Steve
Gardner Michael G
Dudaniec Rachael Y
Kleindorfer Sonia
Genetic variation in the invasive avian parasite, <it>Philornis downsi </it>(Diptera, Muscidae) on the Galápagos archipelago
BMC Ecology
author_facet Donnellan Steve
Gardner Michael G
Dudaniec Rachael Y
Kleindorfer Sonia
author_sort Donnellan Steve
title Genetic variation in the invasive avian parasite, <it>Philornis downsi </it>(Diptera, Muscidae) on the Galápagos archipelago
title_short Genetic variation in the invasive avian parasite, <it>Philornis downsi </it>(Diptera, Muscidae) on the Galápagos archipelago
title_full Genetic variation in the invasive avian parasite, <it>Philornis downsi </it>(Diptera, Muscidae) on the Galápagos archipelago
title_fullStr Genetic variation in the invasive avian parasite, <it>Philornis downsi </it>(Diptera, Muscidae) on the Galápagos archipelago
title_full_unstemmed Genetic variation in the invasive avian parasite, <it>Philornis downsi </it>(Diptera, Muscidae) on the Galápagos archipelago
title_sort genetic variation in the invasive avian parasite, <it>philornis downsi </it>(diptera, muscidae) on the galápagos archipelago
publisher BMC
series BMC Ecology
issn 1472-6785
publishDate 2008-07-01
description <p>Abstract</p> <p>Background</p> <p>Understanding the dispersal and genetic structure of invasive insects across islands is important for designing management plans that are appropriate at spatial and temporal scales. For invasive parasites, population dynamics are largely determined by the distribution and density of their host species. The introduced parasitic fly, <it>Philornis downsi</it>, parasitises nestlings of endemic birds on all major islands of the Galápagos archipelago. The fly's high mortality and fitness impacts are of conservation concern for vulnerable and declining species of Darwin's finches. Using microsatellite data in Bayesian clustering and landscape genetic analyses, we examine gene flow and dispersal in <it>P. downsi </it>between three islands and across habitats (highlands, lowlands) and examine for the presence of population bottlenecks. We also examine variation at the mitochondrial gene <it>CO1 </it>across islands to establish if cryptic species were present.</p> <p>Results</p> <p>Both the mitochondrial and microsatellite data were consistent with there being a single species across islands. We found low genetic differentiation between islands and strong evidence for inter-island gene flow, or shared recent ancestry among individuals. Landscape genetic analysis identified two genetic clusters: one encompassing Santa Cruz and Isabela, and one on Floreana Island. There was no evidence of genetic differentiation between habitats and molecular variance was mainly attributable to within individuals. The combined <it>P. downsi </it>population was found to have undergone a population bottleneck.</p> <p>Conclusion</p> <p><it>Philornis downsi </it>populations have high connectivity within and between islands, with low levels of genetic differentiation between Floreana and the other two islands examined. The genetic bottleneck found across islands suggests there was a small founding population or few introduction events of <it>P. downsi</it>. The high dispersal capacity and wide habitat use of <it>P. downsi </it>highlights the significant threat that this parasite poses to the Galápagos avifauna. Our findings are relevant for assessing the viability of methods to control <it>P. downsi </it>on Galápagos, such as the sterile insect technique.</p>
url http://www.biomedcentral.com/1472-6785/8/13
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