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

bp0013cpr1 | The Hypothalamic-Pituitary-Ovarian Axis | CPR1989

Hypothalamic control of gonadotrophin and prolactin secretion in pigs

Kraeling R. R. , Barb C. R. ,

Keywords: hypothalamus; gonadotrophin; prolactin; pig; neurocndocrine© 1990 Journals of Reproduction & Fertility Ltd...

bp0014cpr13 | Reproductive Management | CPR1993

Seasonal effects on fertility in gilts and sows

Love R. J. , Evans G. , Klupie C. ,

The ancestral wild pig is a short day length seasonal breeder. The domestic pig appears to have retained some of this seasonality as evidenced by a reduction in fertility during the summer—autumn period. The most important aspect of this seasonality is a reduction in the number of mated sows that farrow. Many of these sows conceive and embryos develop normally for 20 - 25 days before pregnancy is terminated and the sow returns to oestrus (25 - 35 days after mating). In ot...

bp0014cpr17 | Components of Prolificacy in Pigs | CPR1993

Genetic basis of prolificacy in Meishan pigs

Haley C. S. , Leel G. J.

Research in France and in the UK confirms the prolificacy of the Chinese Meishan breed to be about three to four piglets greater than that of control Large White females. Crossbreeding studies clearly indicate that this breed difference is due to genes acting in the dam and not in the litter itself. There is high heterosis for litter size in F1 Meishan x Large White crossbred females, such that their litter size is similar to or greater than that of purebred Me...

bp0014cpr19 | Components of Prolificacy in Pigs | CPR1993

Earlyembryonic development in prolific Meishan pigs

Ford S. P. , Youngs C. R. ,

Prenatal mortality in European pigs is estimated at 30-40%, the majority of which occurs between days 12 and 18 after mating. Chinese Meishan pigs are prolific, averaging three to five more pigs per litter than do European breeds. Early reports into the fecundity of Meishan females suggested that their prolificacy resulted from lower embryonic mortality when compared with European females exhibiting the same ovulation rate. The preponderance of evidence suggests that ther...

bp0016cpr5 | OOcyte Development in vitro and in vivo | CPR2001

Mammalian gonadal differentiation: the pig model

Pailhoux E. , Mandon-Pepin B. , Cotinot C.

In mammals, testicular differentiation is initiated by SRY (the sex-determining region of the Y chromosome) gene expression in Sertoli cell precursors, followed by upregulation of the SOX9 gene (SRY-related HMG box gene 9). Subsequently, differentiated testis produces two hormones that induce sexual differentiation of the internal and external genital tract. Knowledge of the molecular mechanisms involved in gonadal differentiation has increased greatly over the past deca...

bp0002rdr20 | Oocyte Maturation | REDR1990

Derivation of pluripotent, embryonic cell lines from the pig and sheep

Notarianni Elena , Galli C , Laurie S , Moor RM , Evans MJ

Summary. As previously described for the establishment of stable, pluripotent cell lines from pig blastocysts, an analogous cell line was isolated from a sheep blastocyst. There are common features in the morphologies and growth characteristics of the pig and sheep cells in culture; in particular, pig and sheep cells display large nuclei and relatively sparse cytoplasm, as is observed in mouse embryonic stem cells. Furthermore, the morphology of the sheep cell...

bp0005rdr34 | Ruminant Models for Human Clinical Medicine | REDR2002

The differential secretion of FSH and LH: regulation through genes, feedback and packaging

McNeilly AS , Crawford JL , Taragnat C , Nicol L , McNeilly JR

While the role of oestradiol and progesterone in the control of GnRH pulsatile secretion and generation of the preovulatory GnRH surge to induce release of the LH surge has been fully investigated, less attention has been given to changes in the pituitary gland that may sensitize gonadotrophs to switch from pulsatile release to surge release of LH, in particular. Furthermore, in the follicular phase while pulsatile secretion of LH is maximal, FSH secretion is reduced, yet both...

bp0009rdr9 | (1) | REDR1986

Spermatogenesis and Sertoli cell numbers and function in rams and bulls

Hochereau-de Reviers M. T. , Monet-Kuntz C. , Courot M.

Summary. The two main types of cellular associations (type I, 2 generations of spermatocytes + 1 of spermatids; type II, 1 of spermatocytes and 2 of spermatids) occupy, respectively, more than half and about a third of the seminiferous epithelium cycle in rams and bulls. However, the duration of the cycle of the seminiferous epithelium and that of spermatogenesis differ between the species. A1 spermatogonia and Sertoli cell total numbers are highly ...

bp0014cpr9 | Ovarian and Uterine Function | CPR1993

Sources and biological actions of relaxin in pigs

Bagnell C. A. , Zhang Q. , Downey B. , Ainsworth L.

Although the major source of relaxin in pigs is the corpus luteum of pregnancy, there is now evidence for relaxin gene expression and translation into protein in the theca intema cells of the preovulatory follicle, the corpus luteum of the cycle and the uterus. The theca interna cells retain their ability to express the relaxin gene and protein following ovulation. During the early stages of development of the corpus luteum, the theca-derived small lutein cells are the so...