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

bp0014cpr18 | Components of Prolificacy in Pigs | CPR1993

Endocrineand follicular studies in Meishan pig

Hunter M. G. , Biggs C. , Faillace L. S.

The enhanced early embryonic survival in Chinese Meishan compared with Large- White gilts may be due, in part, to differences in ovarian and endocrine function, particularly during the periovulatory period. The overall patterns of oestradiol, LH and FSH secretion were not different between Meishan and Large-White hybrid controls during this period, although circulating inhibin concentrations were higher in Meishan gilts. Thus, there appeared to be a decreased sensitivity ...

bp0016cpr23 | New Technologies | CPR2001

Transgenic alteration of sow milk to improve piglet growth and health

Wheeler M. B. , Bleck G. T. , Donovan S. M.

There are many potential applications of transgenic methodologies for developing new and improved strains of livestock. One practical application of transgenic technology in pig production is to improve milk production or composition. The first week after parturition is the period of greatest loss for pig producers, with highest morbidity and mortality attributed to malnutrition and scours. Despite the benefits to be gained by improving lactation performance, little prog...

bp0018cpr17 | Maturation of The Pre-ovulatory Follicle | CPR2009

Transcriptional, post-transcriptional and epigenetic control of porcine oocyte maturation and embryogenesis

Prather R.S. , Ross J.W. , Clay Isom S , Green J.A.

Embryogenesis is a complex process that is controlled at various levels. As new discoveries are made about molecular mechanisms that control development in other species, it is apparent that these same mechanisms regulate pig embryogenesis as well. Methylation of DNA and modification of histones regulate transcription, and mechanisms such as ubiquitinization, autophagy and microRNAs regulate development post-transcriptionally. Each of these systems of regulation is highl...

bp0014cpr8 | Ovarian and Uterine Function | CPR1993

The role of insulin-like growth factors and epidermal growth factor-related peptides in intraovarianregulation in the pig ovary

Hammond J. M. , Samaras S. E. , Grimes R. , Leighton J. , Barber J. , Canning S. F. , Guthrie H. D. ,

The autocrine and paracrine role of the insulin-like growth factors (IGFs) and epiderrnal growth factor (EGF)-related peptides in pig ovary are reviewed. For convenience, each of these regulatory systems is divided into several interactive components: regulated expression of the growth factors, growth factor reception at the cell surface and intracellular action of the growth factors. In addition, the concept of regulated bioavailability and targeting of growth factors in...

bp0001redr7 | (1) | REDR1980

Cryptorchidism and the pituitary—testicular axis in bulls

Schanbacher BD

Summary. In calves made cryptorchid at birth, serum LH concentrations were elevated (P < 0.01) over those of intact controls by 7 weeks of age; a difference which persisted until after puberty. When intact and cryptorchid bulls were given LH-RH, i.v., at approximately 18 months of age, cryptorchid bulls were more responsive. Serum LH concentrations (mean ± s.e.m.) after 250, 1000 and 4000 ng LH-RH were 0.2 ± 0.03, 1.2 ± 0.3 and 12.1...

bp0017cpr13 | (1) | CPR2005

Dietary fat and reproduction in the post partum sow

van den Brand H. , Kemp B.

Lactating sows are not able to ingest sufficient energy to produce the large amount of milk they are presently capable of. Therefore, sows use a considerable amount of body reserves to maintain their milk production. Body weight loss is negatively associated with subsequent reproductive performance. Addition of fat to the diet is often used to increase energy intake during lactation. This review examines the effects of adding fat to the diet on subsequent reproductive pe...

bp0003rdr10 | Development of the Reproductive Axis | REDR1994

Development of the sheep ovary during fetal and early neonatal life and the effect of fecundity genes

McNatty KP , Smith P , Hudson NL , Heath DA , Tisdall DJ , O W-S , Braw-Tal R

In female sheep fetuses, the mesonephros and genital ridge can be identified at days 20 and 23 of gestation (term = 145 days), respectively. Moreover oogonia can be observed at the genital ridge from as early as day 23. Around day 55 of gestation, some germ cells enter meiosis coincident with the arrival of mesonephric-derived somatic cells (i.e. the rete ovarii). From days 75, 100, 120 and 135 of gestation, primordial (one layer of flattened granulosa cells), primary (one...