dc.contributor.author | Augustin, Jakob | |
dc.date.accessioned | 2012-04-13T09:29:09Z | |
dc.date.available | 2012-04-13T09:29:09Z | |
dc.date.issued | 2012-04-13 | |
dc.identifier.isbn | 978-91-628-8452-9 | |
dc.identifier.uri | http://hdl.handle.net/2077/29039 | |
dc.description.abstract | Forty years ago, more than 90% of bird species were classified as
monogamous and not very exciting systems for studies of e.g. sexual
selection. Since then, the discovery of extra-pair paternity (EPP) in more
than 75% of surveyed monogamous bird species has made avian monogamy,
and the interaction between social and genetic mating systems in general, a
challenging and attractive area of research. Despite three decades of
research on EPP in birds, however, many questions and controversies
remain unresolved. This thesis contributes to the understanding of
mechanisms and adaptive reasons, primarily from the female’s perspective,
for the highly diverse frequencies of EPP in birds.
First, in a population of the common redshank (Tringa totanus), a
wader for which the genetic mating system has not been described
previously, a surprising absence of EPP is demonstrated (I). Presumably,
some female pre- or postcopulatory resistance to extra-pair fertilisations is
present. The potential mechanisms and adaptive significance of this is
discussed in relation to redshank ecology and behaviour.
In the three following papers (II-IV), assumptions and predictions of
hypothesised female benefits from EPP are addressed. In sand martins
(Riparia riparia), there were no indications that extra-pair fertilisations
resulted in genetic benefits (e.g. heterozygosity or ‘good genes’) (II). Paper III
tests an assumption related to the genetic compatibility hypothesis, i.e. that
overall heterozygosity leads to increased chick survival; this did not seem to
be the case in Kentish plovers (Charadrius alexandrinus). In northern
lapwings (Vanellus vanellus), the indirect benefits hypothesis is partly
supported by a positive association between EPP and brood sex ratio (IV). As
predicted by the differential sex allocation hypothesis, broods with extra-pair
offspring contained a higher proportion of sons than broods without extrapair
offspring. As for the yet unknown mechanism of sex determination in
birds, an unusual case of a fertile, triploid Kentish plover female is presented
and discussed with regard to the two present major hypotheses for sexdetermination
(VI). Finally, as an alternative or additional interpretation of
what appears to be brood sex ratio adjustment by the female, the often
neglected effect of differential mortality is discussed (V). | sv |
dc.language.iso | eng | sv |
dc.relation.haspart | I) Augustin J, Isaksson D, Pauliny A, Wallander J & Blomqvist D. No evidence of extra-pair paternity in the common redshank (Tringa totanus). Manuscript | sv |
dc.relation.haspart | II) Augustin J, Blomqvist D, Szép T, Szabó ZD & Wagner RH (2007). No evidence of genetic benefits from extra-pair fertilizations in female sand martins (Riparia riparia). Journal of Ornithology 148: 189-198
::doi::10.1007/s10336-006-0119-8 | sv |
dc.relation.haspart | III) Küpper C, Kosztolányi A, Augustin J, Dawson DA, Burke T & Székely T (2010). Heterozygosity-fitness correlations of conserved microsatellite markers in Kentish plovers Charadrius alexandrinus. Molecular ecology 19: 5172-5185
::doi::10.1111/j.1365-294X.2010.04867.x | sv |
dc.relation.haspart | IV) Augustin J, Grønstøl GB, Pauliny A, Wagner RH & Blomqvist D. Variation in brood sex ratio associated with extra-pair paternity in a wader, the northern lapwing (Vanellus vanellus). Manuscript | sv |
dc.relation.haspart | V) Augustin J & Bartoszek K. Are you sure you have shown primary sex ratio adjustment? The problem of differential mortality revisited. Manuscript | sv |
dc.relation.haspart | VI) Küpper C, Augustin J, Edwards S, Székely T, Kosztolányi A & Janes AE. Triploid plover female provides support for a role of the W chromosome in avian sex determination. Manuscript | sv |
dc.subject | extra-pair paternity | sv |
dc.subject | genetic benefits | sv |
dc.subject | heterozygosity | sv |
dc.subject | sex ratio | sv |
dc.subject | Riparia riparia | sv |
dc.subject | Tringa totanus | sv |
dc.subject | Vanellus vanellus | sv |
dc.subject | Charadrius alexandrinus | sv |
dc.title | Infidelity in Birds – Causes and Consequences of Extra-pair Paternity | sv |
dc.type | Text | swe |
dc.type.svep | Doctoral thesis | eng |
dc.gup.mail | jakob.augustin@bioenv.gu.se | sv |
dc.type.degree | Doctor of Philosophy | sv |
dc.gup.origin | University of Gothenburg. Faculty of Science | sv |
dc.gup.department | Department of Zoology ; Zoologiska institutionen | sv |
dc.gup.defenceplace | Fredagen den 4 Maj, kl. 10.00, Föreläsningssalen, Institutionen för biologi och miljövetenskap, Zoologihuset, Medicinaregatan 18A, Göteborg | sv |
dc.gup.defencedate | 2012-05-04 | |
dc.gup.dissdb-fakultet | MNF | |