Searchable, peer-reviewed, open-access proceedings from bioscience and biomedical conferences

bp0012cpr2 | Endocrinology of Follicular Development | CPR1985

Maturation of ovarian follicles in the prepubertalgilt

Christenson R. K. , Ford J. J. , Redmer D. A.

Summary. The processes of follicle development and puberty are closely related, and both are associated with maturation of the hypothalamic—pituitary—ovarian axis. Prenatal development of the ovary is independent of gonadotrophic stimulation. Beyond 60 days of age (postnatally), tertiary follicles develop and gonadotrophins begin to influence ovarian follicular development. Negative feedback regulation of pituitary gonadotrophins by ovarian secretions dev...

bp0014cpr1 | Regulation of Oocyte and Embryonic Development in Pigs | CPR1993

Follicle–oocyte–sperminteractions in vivo and in vitro in pigs

Sirard M. A. , Dubuc A. , Bolamba D. , Zheng Y. , Coenen K.

In vitro culture has provided new information on the mechanisms involved in fertilization where two completely different cells fuse together. At the same time, results obtained in vitro have led to new questions. Does the follicle influence the final maturation process of the oocyte and does the oviduct regulate the normal behaviour of spermatozoa? Recent studies indicate a critical influence of both the follicular compartment and the oviduct on the norm...

bp0013cpr17 | Gamete Physiology | CPR1989

Expression and performance in transgenic pigs

Pursel V. G. , Bolt D. J. , Miller K. F. , Pinkert C. A. , Hammer R. E. , Palmiter R. D. , Brinster R. L.

Summary. Recent research clearly shows that fusion genes can be microinjected into a pronucleus of an ovum and integrate into the pig genome. Animals with such fusion genes are called ‘transgenic’. The percentage of injected ova that developed into transgenic pigs varied among experiments from 0.31% to 1.73%. The percentage of transgenic pigs that expressed the fusion gene ranged from 17% to 100%.Eleven different regulatory s...

bp0007rdr3 | Ruminant Genomes | REDR2010

Creating new knowledge for ruminant reproduction from rapidly expanding and evolving scientific databases

Bauersachs S , Blum H , Krebs S , FröhIich T , Arnold GJ , Wolf E

Declining fertility is a major problem for the dairy industry. Recent developments of Omics-technologies facilitate a comprehensive analysis of molecular patters in gametes, embryos and tissues of the reproductive tract which may help to identify the reasons for impaired fertility. Large Omics-datasets require appropriate bioinformatics analysis in the context of rapidly expanding and evolving scientific databases. This overview summarizes the current status of ruminant genome...

bp0016cpr17 | Gestation and Parturition | CPR2001

Causes and conseq uences of fetal growth retardation in pigs

Ashworth C. J . , Finch A. M. , Page K. R. , Nwagwu M. O. , McArdle H. J.

In pigs, as in other species, fetal growth retardation is associated with reduced birth weight and increased risk of fetal and neonatal death. As there are few opportunities after birth to remedy the detrimental effects of low birth weight, it is important to understand both the intrinsic and extrinsic factors associated with inadequate fetal growth and to determine when growth retarded fetuses deviate from the growth trajectory of their normal sized littermates. Inadequately ...

bp0017cpr7 | (1) | CPR2005

The growth hormone/prolactin gene family in ruminant placentae

Raeside J. I. , Christie H. L. , Renaud R. L. , Sinclair P. A.

A review of the remarkable production of steroids by the testes of the boar is presented, with the principal aims of highlighting the achievements of the Leydig cells and, at the same time, pointing to the considerable deficiencies in our understanding of its biological relevance. The onset of gonadal steroidogenesis at an early stage of sex differentiation and the pattern of pre- and postnatal secretion of steroids are outlined. This is followed by a list of steroids id...