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Molecular Ecology · 2017 · Vol. 26 · Issue 20 · Wiley
Drive genes are genetic elements that manipulate the 50% ratio of Mendelian inheritance in their own favour, allowing them to rapidly propagate through populations. The action of drive genes is often hidden, making detection and identification inherently difficult. Yet drive genes can have profound evolutionary consequences for the populations that harbour them: most known drivers are detrimental to organismal gamete developme...
Molecular Ecology · 2017 · Vol. 26 · Issue 13 · Wiley
When females mate with multiple males, they set the stage for postcopulatory sexual selection via sperm competition and/or cryptic female choice. Surprisingly little is known about the rates of multiple mating by females in the wild, despite the importance of this information in understanding the potential for postcopulatory sexual selection to drive the evolution of reproductive behaviour, morphology and physiology. Dung beet...
Ecology Letters · 2015 · Vol. 18 · Issue 9 · Wiley
Reproduction among related individuals is generally maladaptive. Inbreeding imposes significant costs on individual reproductive success, and can decrease population fitness. Theory predicts that polyandrous females can avoid inbreeding by exploiting paternity‐biasing mechanisms that enable differential sperm ‘use’. Evidence of sperm selection is difficult to demonstrate because patterns of non‐random paternity can be generate...
Ecology Letters · 2012 · Vol. 15 · Issue 1 · Wiley
Ecology Letters (2011) 14 : 42–46 Abstract Although mating is costly, multiple mating by females is a taxonomically widespread phenomenon. Theory has suggested that polyandry may allow females to gain genetic benefits for their offspring, and thus offset the costs associated with this mating strategy. For example, the good sperm hypothesis posits that females benefit from mating multiply when genetically superior males have in...
Ecology Letters · 2011 · Vol. 14 · Issue 9 · Wiley
Ecology letters (2011) 14 : 891–895 Abstract Sperm are particularly prone to oxidative damage because they generate reactive oxygen species (ROS), have a high polyunsaturated fat content and a reduced capacity to repair DNA damage. The dietary compounds vitamin E and beta‐carotene are argued to have antioxidant properties that help to counter the damaging effects of excess ROS. Here in, we tested the post‐copulatory consequenc...
Molecular Ecology · 2007 · Vol. 16 · Issue 21 · Wiley
Empirical tests of sexual selection theory generally utilize model systems under laboratory settings, and extend conclusions to evolutionary processes occurring in nature. The biological significance of laboratory findings will depend largely on the mating rates of females and patterns of paternity in natural populations, information on which is generally lacking. Here we use microsatellite markers to provide rare estimates of...
Molecular Ecology · 2006 · Vol. 15 · Issue 11 · Wiley
Dawson's burrowing bee is a large solitary ground‐nesting bee endemic to the arid zone of Western Australia. In this study, we use microsatellite markers to analyse the genotypes of offspring from individual nests to determine the number of effective mates for each female. From these data we have determined that females almost certainly mate only once which is consistent with male reproductive tactics that include protandry an...
Molecular Ecology · 2006 · Vol. 15 · Issue 12 · Wiley
Multiple mating is thought to provide an opportunity for females to avoid the costs of genetic incompatibility by postcopulatory selection of compatible sperm haplotypes. Few studies have tested the genetic incompatibility hypothesis directly. Here we experimentally manipulated the compatibility of females with their mates using the gryllid cricket Teleogryllus oceanicus . We recorded the hatching success of eggs laid by femal...
Molecular Ecology · 2006 · Vol. 15 · Issue 4 · Wiley
Dawson's burrowing bee is a large, fast‐flying solitary nesting bee endemic to the arid zone of Western Australia. In this study the population structure of the species was examined with molecular markers. Using eight microsatellite loci, we genotyped 531 adult female bees collected from 13 populations of Dawson's burrowing bee, Amegilla dawsoni , across the species range. The mean number of alleles per locus ranged from 4 to...
Molecular Ecology · 1998 · Vol. 7 · Issue 11 · Wiley
Four polymorphic microsatellite loci were used to assess biological parentage of 453 offspring from 15 pregnant males from a natural population of the Western Australian seahorse Hippocampus angustus . Microsatellite genotypes in the progeny arrays were consistent with a monogamous mating system in which both females and males had a single mate during a male brooding period. Multilocus genotypes implicated four females in the...