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Population genetics of W olbachia ‐infected, parthenogenetic and uninfected, sexual populations of T etrastichus coeruleus ( H ymenoptera: E ulophidae)

Barbara M. Reumer; Jacques J. M. van Alphen; Ken Kraaijeveld
Molecular Ecology · Vol. 22, Issue 17 · pp. 4433-4444 · 2013

Abstract

W olbachia are endosymbiotic bacteria known to manipulate the reproduction of their hosts. These manipulations are expected to have consequences on the population genetics of the host, such as heterozygosity levels, genetic diversity and gene flow. The parasitoid wasp T etrastichus coeruleus has populations that are infected with parthenogenesis‐inducing Wolbachia and populations that are not infected. We studied the population genetics of T . coeruleus between and within W olbachia ‐infected and uninfected populations, using nuclear microsatellites and mitochondrial DNA . We expected reduced genetic diversity in both DNA types in infected populations. However, migration and gene flow could introduce new DNA variants into populations. We therefore paid special attention to individuals with unexpected (genetic) characteristics. Based on nuclear and mitochondrial DNA , two genetic clusters were evident: a thelytokous cluster containing all W olbachia ‐infected, parthenogenetic populations and an arrhenotokous cluster containing all uninfected, sexual populations. Nuclear and mitochondrial DNA did not exhibit concordant patterns of variation, although there was reduced genetic diversity in infected populations for both DNA types. Within the thelytokous cluster, there was nuclear DNA variation, but no mitochondrial DNA variation. This nuclear DNA variation may be explained by occasional sex between infected females and males, by horizontal transmission of W olbachia , and/or by novel mutations. Several females from thelytokous populations were uninfected and/or heterozygous for microsatellite loci. These unexpected characteristics may be explained by migration, by inefficient transmission of W olbachia , by horizontal transmission of W olbachia , and/or by novel mutations. However, migration has not prevented the build‐up of considerable genetic differentiation between thelytokous and arrhenotokous populations.

Bibliographic Information

JournalMolecular Ecology
PublisherWiley
Publication Date2013-09-01
Publication Year2013
Volume22
Issue17
Pages4433-4444
Document TypeJournal Article
Print ISSN0962-1083
eISSN1365-294X
DOI10.1111/mec.12397
SubjectEcology & Organismal Biology

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/1365294X
Publisher PageOpen Publisher Page
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