Induced-ovulation in female dromedary camel involves kisspeptin neuron activation by β nerve growth factor

Author:

Ainani Hassan123,Chhaibi Hamid4,Achaâban Mohammed Rachid12,Piro Mohammed56,Ouassat Mohammed12,Tibary Ahmed78,El Allali Khalid12,Simonneaux Valérie3

Affiliation:

1. Comparative Anatomy Unit , Department of Biological and Pharmaceutical Veterinary Sciences, , Rabat , Morocco

2. Hassan II Agronomy and Veterinary Institute , Department of Biological and Pharmaceutical Veterinary Sciences, , Rabat , Morocco

3. Institute of Cellular and Integrative Neurosciences, CNRS UPR 3212 & University of Strasbourg , Strasbourg , France

4. Comparative Anatomy Unit, Department of Biological and Pharmaceutical Veterinary Sciences, Hassan II Agronomy and Veterinary Institute , Rabat , Morocco

5. Medicine and Surgical Unit of Domestic animals , Department of Medicine, Surgery and Reproduction, , Rabat , Morocco

6. Hassan II Agronomy and Veterinary Institute , Department of Medicine, Surgery and Reproduction, , Rabat , Morocco

7. Comparative Theriogenology , Department of Veterinary Clinical Science, College of Veterinary Medicine and Centre for Reproductive Biology, , Washington , USA

8. Washington State University , Department of Veterinary Clinical Science, College of Veterinary Medicine and Centre for Reproductive Biology, , Washington , USA

Abstract

Abstract The dromedary camel (Camelus dromedarius) is a short-day desert breeder in which female ovulation is induced by mating. Current data indicate that male-induced ovulation is triggered by its seminal plasma nerve growth factor beta (β-NGF), but the exact mechanisms involved in the induction of ovulation are still unknown. In this study, we report that an intramuscular injection of β-NGF in sexually active short-day-adapted female camels induces an ovulation attested by a surge of circulating LH (2–6 h after treatment) followed by an oocyte release with its cumulus oophorus (confirmed by ultrasonography 72 h after treatment) and a large and progressive increase in circulating progesterone (significant from the 2nd to the 10th days after β-NGF injection). In addition, this β-NGF treatment induces a broad nuclear c-FOS activation in cells located in various hypothalamic areas, notably the preoptic area, the arcuate nucleus, the dorso- and ventromedial hypothalamus, the paraventricular nucleus, and the supraoptic nucleus. A double immunostaining with neuropeptides known to be involved in the central control of reproduction indicates that ~28% kisspeptin neurons and 43% GnRH neurons in the proptic area, and ~10% RFRP-3 neurons in the dorso- and ventromedial hypothalamus are activated following β-NGF injection. In conclusion, our study demonstrates that systemic β-NGF induces ovulation in the female dromedary camel and indicates that this effect involves the central activation of hypothalamic neurons, notably the kisspeptin neurons.

Funder

PICS CNRS Volubilis and PHC Toubkal

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,General Medicine,Reproductive Medicine

Reference87 articles.

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