Biology of Reproduction · 2004 · 838 citations · 41 references
OocyteFertilityGeneticsReproductive HealthReproductive BiologyAnimal GeneticsEmbryologyBelclare SheepReproductive PhysiologyPublic HealthOvis AriesInfertilityIncreased Ovulation RateGenetic VariationAnimal ReproductionTheriogenologyDevelopmental BiologyOogenesisAnimal ScienceOvulation RateGreater Ovulation RateMedicineAnimal Breeding
Belclare and Cambridge sheep, bred for high litter size, exhibit ovulation‑rate variation and occasional sterility due to follicular development failure, indicating a large‑effect gene. Mutations in GDF9 and BMP15 increase ovulation rate in heterozygotes but cause sterility in homozygotes, demonstrating GDF9’s essential role in folliculogenesis and showing that combined mutations yield a higher ovulation rate than either alone.
Belclare and Cambridge are prolific sheep breeds, the origins of which involved selecting ewes with exceptionally high litter size records from commercial flocks. The variation in ovulation rate in both breeds is consistent with segregation of a gene (or genes) with a large effect on this trait. Sterile ewes, due to a failure of normal ovarian follicle development, occur in both breeds. New naturally occurring mutations in genes for the oocyte-derived growth factors growth differentiation factor 9 (GDF9) and bone morphogenetic protein 15 (BMP15) are described. These mutations are associated with increased ovulation rate in heterozygous carriers and sterility in homozygous carriers in both breeds. This is the first time that a mutation in the gene for GDF9 has been found that causes increased ovulation rate and infertility in a manner similar to inactivating mutations in BMP15, and shows that GDF9 is essential for normal folliculogenesis in sheep. Furthermore, it is shown, for the first time in any species, that individuals with mutations in both GDF9 and BMP15 have a greater ovulation rate than sheep with either of the mutations separately.
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Growth differentiation factor-9 is required during early ovarian folliculogenesis
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