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

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...

bp0014cpr7 | Ovarian and Uterine Function | CPR1993

Early uterine development in pigs

Bartol F. F. , Wiley A. A. , Spencer T. E. , Vallet J. L. , Christenson R. K.

The capacity of pig uterine tissues to recognize and respond to maternal and conceptus signals determines whether pregnancy can be established and defines the environment in which embryonic and fetal growth occur. Limits of uterine capacity may be defined genetically. However, the extent to which functional uterine capacity approaches genetic potential may be determined, in part, by the success of organizational events associated with growth, morphogenesis and cytodiffere...

bp0016cpr22 | New Technologies | CPR2001

Deep intrauterine insemination and embryo transfer in pigs

Martinez E. A. , Vazquez J. M , Roca J. , Lucas X. , Gil M. A. , Vazquez J. L.

A new method for non-surgical deep intrauterine catheterization of pigs, without sedation of the sow, is described. Insemination results obtained with this method using fresh spermatozoa demonstrate that, in comparison to conventional artificial insemination (Al) (3 × 109 spermatozoa in 80-100 ml), a 20-60-fold reduction in the number of spermatozoa inseminated and at least a 8-10-fold reduction in the dose volume can be used without affecting fertility ...

bp0017cpr18 | (1) | CPR2005

Harnessing the biology of the oviduct for the benefit of artificial insemination

Holt W.V. , Elliott R.M.A. , Fazeli A. , Sostaric E. , Georgiou A.S. , Satake N. , Prathalingam N. , Watson P.F.

Spermatozoa fulfil a single role, namely achieving syngamy by transporting the haploid genome to their counterpart gamete, the oocyte. Simple as this may seem, it is fraught with many difficulties, especially in the face of biological processes that enable females to select spermatozoa after they have mated multiply with several males. Conversely, the female reproductive tract sequesters a privileged sperm subpopulation in the oviductal isthmus for variable periods of ti...

bp0001redr2 | (1) | REDR1980

The role of the pineal gland in seasonality

Seamark RF , Kennaway DJ , Matthews CD , Fellenberg AJ , Phillipou G , Kotaras P , McIntosh JEA , Dunstan E , Obst JM

Summary. The life time reproductive performance of 2 flocks of Merino crossbred ewes pinealectomized at 7–60 days of age, and maintained in South Australia did not differ from that of sham-operated control animals kept in the same flocks. The pineal gland is therefore not a major determinant of reproductive success, but a role for the pineal in adjusting breeding activity to season is not excluded. It was confirmed that pineal denervation of adult ewes ...

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...

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...

bp0016cpr14 | Embryonic and Placental Development | CPR2001

Functional analysis of autocrine and paracrine signalling at the uterine–conceptus interface in pigs

Jaeger L. A. , Johnson L. A. , Ka H. , Gadow J. G. , Burghardt R. C. , Spencer T. E. , Bazer F.W.

The complexity of implantation necessitates intimate dialogue between conceptus and maternal cells, and precise coordination of maternal and conceptus signalling events. Maternal and conceptus-derived steroid hormones, growth factors and cytokines, as well as integrins and their ligands, have important and inter-related roles in mediating adhesion between apical aspects of conceptus trophectoderm and maternal uterine luminal epithelium that leads to formation of an epithelioch...