The follicular microenvironment in low (++) and high (I+B+) ovulation rate ewes

Ewes with single copy mutations in GDF9, BMP15 or BMPR1B have smaller preovulatory follicles containing fewer granulosa cells (GC), while developmental competency of the oocyte appears to be maintained. We hypothesised that similarities and/or differences in follicular maturation events between WT (...

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Veröffentlicht in:Reproduction (Cambridge, England) England), 2020-05, Vol.159 (5), p.585-599
Hauptverfasser: Clark, Zaramasina L, Heath, Derek A, O’Connell, Anne R, Juengel, Jennifer L, McNatty, Kenneth P, Pitman, Janet L
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Sprache:eng
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Zusammenfassung:Ewes with single copy mutations in GDF9, BMP15 or BMPR1B have smaller preovulatory follicles containing fewer granulosa cells (GC), while developmental competency of the oocyte appears to be maintained. We hypothesised that similarities and/or differences in follicular maturation events between WT (++) ewes and mutant ewes with single copy mutations in BMP15 and BMPR1B (I+B+) are key to the attainment of oocyte developmental competency and for increasing ovulation rate (OR) without compromising oocyte quality. Developmental competency of oocytes from I+B+ animals was confirmed following embryo transfer to recipient ewes. The microenvironment of both growing and presumptive preovulatory (PPOV) follicles from ++ and I+B+ ewes was investigated. When grouped according to gonadotropin-responsiveness, PPOV follicles from I+B+ ewes had smaller mean diameters with fewer GC than equivalent follicles in ++ ewes (OR = 4.4 ± 0.7 and 1.7 ± 0.2, respectively; P 
ISSN:1470-1626
1741-7899
DOI:10.1530/REP-19-0613