Sort   by:  
 Page size 
The blood-feeding behavior of Anopheles females delivers essential nutrients for egg development and drives parasite transmission between humans. Plasmodium growth is adapted to the vector reproductive cycle, but how changes in the reproductive cycle impact parasite development remains unclear. Here...
2021-11-03 | MTBLS1282 | MetaboLights
Despite holding a central role for fertilisation success, reproductive traits often show elevated rates of evolution and diversification. The rapid evolution of seminal fluid proteins (Sfps) within populations is predicted to cause mis-signalling between the male ejaculate and female reproductive tr...
ORGANISM(S): Drosophila montana 
2020-12-01 | PXD019634 | Pride
We present data using a novel method to simultaneously identify and quantify transferred male seminal proteins and the female reproductive proteome using multiplexed Tandem-Mass-Tag (TMT) isobaric labelling of the lower female reproductive tracts dissected from virgin- or recently mated- females of ...
ORGANISM(S): Drosophila novamexicana Drosophila americana Drosophila virilis 
2023-10-24 | PXD031638 | Pride
Fertility depends on the coordination of complex interactions between male and female reproductive proteins inside the female reproductive tract (FRT). These interactions mediate a suite of changes in female behavior, morphology, and physiology after mating, yet little is known about how the molecul...
ORGANISM(S): Drosophila melanogaster (Fruit fly) 
2020-06-25 | PXD017730 | Pride
Fertility depends, in part, on interactions between male and female reproductive proteins inside the female reproductive tract (FRT) that mediate postmating changes in female behavior, morphology, and physiology. Coevolution between interacting proteins within species may drive reproductive incompat...
ORGANISM(S): Drosophila simulans Drosophila mauritiana 
2020-06-25 | PXD017708 | Pride
The evolution of female choice mechanisms favouring males of their own kind is considered as crucial step during the early stages of speciation. However, although the genomics of mate choice may influence both the likelihood and speed of speciation, the identity and location of genes underlying asso...
ORGANISM(S): Drosophila melanogaster 
Reproductive proteins evolve rapidly, which is predicted to cause postmating-prezygotic (PMPZ) reproductive isolation between divergent populations. While most previous studies have focused on protein sequence divergence as a likely driver of PMPZ incompatibilities, reproductive proteomes may also d...
ORGANISM(S): Drosophila mojavensis mojavensis Drosophila arizonae 
2026-04-02 | PXD065290 | Pride
In internally fertilizing organisms, mating involves a series of highly coordinated molecular interactions between the sexes that occur within the female reproductive tract. In species with promiscuous mating systems, traits involved in postcopulatory interactions are expected to evolve rapidly, po...
ORGANISM(S): Drosophila mojavensis 
Postmating reproductive isolation is often manifested as hybrid male sterility, for which X-linked genes are over-represented. In contrast, X-linked gene are significantly under-represented among testis-expressing gene.This seeming contradiction may be germane to the X:autosome imbalance hypothesis ...
ORGANISM(S): Drosophila simulans 
Speciation involves the reproductive isolation of natural populations due to the sterility or lethality of their hybrids. However, the molecular basis of hybrid lethality and the evolutionary driving forces that provoke it, remain largely elusive. The hybrid male rescue (Hmr) and the lethal hybrid r...
ORGANISM(S): Drosophila melanogaster (Fruit fly) 
2013-11-20 | PXD000489 | Pride
Sort   by:  
 Page size