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

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...

bp0016cpr12 | Fertilization in vivo and in vitro | CPR2001

In vitro fertilization and embryo development in pigs

Abeydeera L. R.

Considerable progress has been made in the in vitro production of pig embryos using improved methods for in vitro maturation (IVM) and fertilization (IVF). Despite the progress, polyspermic penetration remains a problem for in vitro-matured oocytes. Variation among boars, ejaculates and IVF protocols used in different laboratories appears to influence the incidence of polyspermy. Recent studies indicate that oviduct cells and their secretions p...

bp0013cpr16 | Gamete Physiology | CPR1989

Cloning of embryos

Prather R. S. , First N. L. ,

Summary. Nuclear transfer for the study of differentiation in amphibians has been used since the 1950s, but not until recently have the same procedures been applied successfully to some mammals. Nuclear transfer, as developed for the amphibian, is successful in sheep, cattle, rabbit, and pig, but not mouse embryos. This fact is discussed in relation to the species-specific timing of the activation of the zygotic genome. Nuclear transfer to an oocyte presu...

bp0014cpr10 | Conceptus-Uterine Interactions in Pigs | CPR1993

Studies of uterine secretions and products of primary cultures of endometrial cells in pigs

Davis D. L. , Blair R. M. ,

The uterus plays a central role in the reproductive biology of mammals. Adaptation of the uterus from an oviparous to a viviparous nature required changes that involved production of a uterine environment that could support the development of the embryo and fetus. Production of a suitable environment includes the synthesis and secretion of products by the uterine endometrium. However, the uterine endometrium is not a single homogeneous unit, but rather consists of several...

bp0005rdr12 | Pre-natal Programming of Lifetime Productivity and Health | REDR2002

Gene expression in the developing embryo and fetus

Taylor J , Fairburn H , Beaujean N , Meehan R , Young L

Determining the stage- and tissue-specific patterns of gene expression shown by the embryo and fetus will provide information about the control of normal development. Identification of alterations in these patterns associated with specific abnormal phenotypes will also be informative regarding the underlying molecular mechanisms. In addition, qualitative and quantitative changes in gene expression that deviate from the norm may provide a potential marker system for predicting ...

bp0009rdr13 | (1) | REDR1986

Endocrine regulation of puberty in cows and ewes

Kinder J. E. , Day M. L. , Kittok R. J.

Summary. Sexual maturation in cows and ewes is modulated through changes in hypothalamic inhibition. This inhibition results in little or no stimulation of the release of gonadotrophins from the anterior pituitary. The ovary has a primary role in inhibiting gonadotrophin secretion during the prepubertal period and the responsiveness to the negative feedback effects of oestrogen decreases during the peripubertal period. There is also an increased secretion of o...

bp0017cpr6 | (1) | CPR2005

The role of intra-luteal factors in the control of the porcine corpus luteum

Gadsby J. , Rose L. , Sriperumbudur R. , Ge Z.

In this paper we review three intra-luteal factors and their roles in the corpus luteum (CL). Insulin-like growth factor (IGF)-I, together with its receptor and IGF-binding proteins (IGFBPs), represent an important control system in the CL. IGF-I is a product of small luteal cells and has steroidogenic (i.e. luteotrophic) actions on large luteal cells via the type I receptor, while IGFBPs (e.g. BP-2 and 3; small cells) generally inhibit IGF-Is actions. IGF-I is particula...

bp0014cpr20 | Components of Prolificacy in Pigs | CPR1993

Uterine function in Meishan pigs

Christenson R. K. , Vallet J. L. , Leymaster K. A. , Young L. D.

The Meishan pig provides a biological model with the genetic capacity to express a high prolificacy. This prolificacy can be partially attributed to a higher ovulation rate and a higher rate of prenatal survival at a given ovulation rate throughout gestation than in European breeds. Both early embryonic survival (factors inherent to the ovum and uterus, which occur before day 25 of gestation) and uterine capacity (factors inherent to uterine limitation, which occur from 3...

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...