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

bp0019cpr16 | Pregnancy, Parturition and The Neonate | CPR2013

Roles of selected nutrients in development of the porcine conceptus during pregnancy

Fuller W. Bazer Fuller W. , Jinyoung Kim Jinyoung , Gwonhwa Song Gwonhwa , Hakhyun Ka Hakhyun , Guoyao Wu Guoyao , Johnson Gregory A. , Vallet Jeffrey L.

Conceptus development in mammals depends on an intra-uterine environment filled with histotroph that includes molecules that are secreted by uterine epithelia and/or selectively transported into the uterine lumen. In pigs, total recoverable glucose, fructose, arginine, leucine and glutamine increase in histotroph with advancing days of the peri-implantation period of pregnancy and in allantoic fluid later in gestation. During pregnancy, the uterine luminal epithelium (LE...

bp0013cpr18 | Early Pregnancy | CPR1989

Causes and consequences of early embryonic diversity in pigs

Pope W. F. , Xie S. , Broermann D. M. , Nephew K. P.

Summary. Within 14 h of ovulation, follicular development in gilts was skewed towards a majority of mature follicles, based on their endocrine milieu. Oocyte maturation was also skewed, with a majority of the oocytes being meiotically more developed than the rest. Similarly, the pattern of ovulation in gilts was such that 70% of the follicles ovulated during a short period of time, while most of the remaining 30% ovulated over a more protracted period. Th...

bp0018cpr19 | Management of Ovarian Activity in Swine | CPR2009

Studies on fixed-time ovulation induction in the pig

Brussow K.P. , Schneider F. , Kanitz W. , Ratky J. , Kauffold J. , Wahner M.

A technology that allows for manipulating of oestrus and ovulation, and would then also allow for fixed-time insemination, can be of great benefit for swine farms that operate using sow batch management due, at least in part, to savings in labour and the production of large batches of evenly developed pigs. Thanks to the current knowledge on endocrine regulation of follicle development and ovulation, and the availability of numerous reproductively active substances such ...

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...

bp0003rdr26 | Regulation of Gonadal Function | REDR1994

Control of antral follicle development and selection in sheep and cattle

Campbell BK , Scaramuzzi RJ , Webb R

The development of antral follicles in sheep and cattle is dependent on FSH, but large antral follicles can shift their gonadotrophic dependence from FSH to LH. The mechanisms that result in the selection of at least one ovulatory follicle from identical follicular cohorts, exposed to the same endocrine environment, still remain to be elucidated. The aim of this research was to extend in vitro results from the rodent to sheep and cattle and, using both in vivo</em...

bp0009rdr11 | (1) | REDR1986

Changes in sperm surfaces associated with epididymal transit

Hammerstedt R. H. , Parks J. E.

Abstract unavailable© 1987 Journals of Reproduction & Fertility Ltd...

bp0009rdr18 | Male Function and Spermatogenesis | REDR1986

Transgenic livestock

Simons J. P. , Land R. B.

Summary. Single genes can now be added routinely to the genome of mice by molecular manipulation as simple Mendelian dominants; this complements the normal process of reproduction to give ‘transgenic’ animals. Success in ruminants is limited to a few examples in sheep and although gene expression has yet to be documented, there is every reason to expect that it will be achieved. The application of this technology to livestock improvement depends on...

bp0012cpr1 | Endocrinology of Follicular Development | CPR1985

Basic physiology of follicular maturationin the pig

Foxcroft G. R. , Hunter Morag G. ,

Summary. The pig is an excellent animal in which to study the control of folliculogenesis in a polytocous species, and particularly to examine the inter-relationships between follicles from the same animal. Follicle recruitment occurs from the proliferating pool, and various studies suggest that this recruitment occurs between Days 14 and 16 of the oestrous cycle. The growth of follicles selected for ovulation is associated with rapid atresia of smaller f...

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...

bp0014cpr5 | Culture and Manipulation of Pig Oocytes and Embryos | CPR1993

Culture of pig embryos

Petters R. M. , Wells K. D. ,

Pig embryos can be cultured using a number of different strategies including complex approaches like culture in vivo in a surrogate oviduct (rabbit, sheep, mouse), culture in mouse oviducts in organ culture, and co-culture of embryos with cells in addition to simple approaches like culture in defined media or salt solutions. Addition of serum to medium has been of particular importance where blastocyst development and hatching are required. Pig conceptuses (day 1...