Genetic analysis of Cydia pomonella (Lepidoptera: Tortricidae) populations with different levels of sensitivity towards the Cydia pomonella granulovirus (CpGV)
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作者:
Nadine A. Gund
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机构:Geisenheim Research Center,Department of Phytomedicine
Nadine A. Gund
Annette Wagner
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机构:Geisenheim Research Center,Department of Phytomedicine
Annette Wagner
Alicia E. Timm
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机构:Geisenheim Research Center,Department of Phytomedicine
Alicia E. Timm
Stefanie Schulze-Bopp
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机构:Geisenheim Research Center,Department of Phytomedicine
Stefanie Schulze-Bopp
Johannes A. Jehle
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机构:Geisenheim Research Center,Department of Phytomedicine
Johannes A. Jehle
Jes Johannesen
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机构:Geisenheim Research Center,Department of Phytomedicine
Jes Johannesen
Annette Reineke
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机构:Geisenheim Research Center,Department of Phytomedicine
Annette Reineke
机构:
[1] Geisenheim Research Center,Department of Phytomedicine
[2] University of Mainz,Department of Ecology, Zoological Institute
[3] Agricultural Service Center Palatinate (DLR Rheinpfalz),Laboratory of Biotechnological Crop Protection, Department of Phytopathology
[4] Federal Research Centre for Cultivated Plants (Julius Kühn-Institut),Institute for Biological Control
Codling moth;
Baculovirus;
CpGV;
Microsatellites;
mtDNA;
Population genetics;
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摘要:
Microsatellite (simple sequence repeats, SSR) and mitochondrial DNA markers were used to assess the structure of European codling moth populations showing different levels of susceptibility towards one of the most important biocontrol agents used in apple production, the Cydia pomonella granulovirus CpGV-M. In 638 C. pomonella individuals from 33 different populations a total of 92 different alleles were scored using six SSR loci. The global estimate of genetic differentiation for all 33 populations was not significantly different from zero, thus indicating a lack of genetic differentiation. AMOVA analysis revealed a very weak but significant variance among C. pomonella populations from different geographic regions, however, no significant variation was evident between CpGV-M resistant or susceptible C. pomonella populations. Sequence analysis of a fragment of the cytochrome oxidase subunit 1 in eight C. pomonella populations resulted in 27 haplotypes, which were grouped in two distinct clusters. Again, no genetic differentiation between CpGV-M resistant and susceptible codling moth populations was detectable. In addition, Structure analysis using microsatellites and association tests with mtDNA haplotypes found neither population-level nor individual correlations associated with CpGV-M resistance. Accordingly, this lack of population structure does not allow discriminating between one or several, separate origins of CpGV-M resistance.
机构:
Swedish Univ Agr Sci, Dept Plant Protect Biol, Chem Ecol Hort Res Unit, Alnarp, SwedenSwedish Univ Agr Sci, Dept Plant Protect Biol, Chem Ecol Hort Res Unit, Alnarp, Sweden
Cattaneo, Alberto Maria
Bobkov, Yuriy V.
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Univ Florida, Ctr Smell & Taste, Whitney Lab, Gainesville, FL USA
Univ Florida, McKnight Brain Inst, Gainesville, FL USASwedish Univ Agr Sci, Dept Plant Protect Biol, Chem Ecol Hort Res Unit, Alnarp, Sweden
Bobkov, Yuriy V.
Gonzalez, Francisco
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机构:
ChemTica Int SA, Sto Domingo, Heredia, Costa RicaSwedish Univ Agr Sci, Dept Plant Protect Biol, Chem Ecol Hort Res Unit, Alnarp, Sweden
Gonzalez, Francisco
Garczynski, Stephen F.
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USDA ARS, Temperate Tree Fruit & Vegetable Res Unit, Wapato, WA USASwedish Univ Agr Sci, Dept Plant Protect Biol, Chem Ecol Hort Res Unit, Alnarp, Sweden
Garczynski, Stephen F.
Witzgall, Peter
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Swedish Univ Agr Sci, Dept Plant Protect Biol, Chem Ecol Hort Res Unit, Alnarp, SwedenSwedish Univ Agr Sci, Dept Plant Protect Biol, Chem Ecol Hort Res Unit, Alnarp, Sweden
Witzgall, Peter
Walker, William B., III
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Swedish Univ Agr Sci, Dept Plant Protect Biol, Chem Ecol Hort Res Unit, Alnarp, SwedenSwedish Univ Agr Sci, Dept Plant Protect Biol, Chem Ecol Hort Res Unit, Alnarp, Sweden