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

bp0016cpr10 | Fertilization in vivo and in vitro | CPR2001

Involvement of oviduct in sperm capacitation and oocyte development in pigs

Rodriguez-Martinez H. , Tienthai P. , Suzuki K. , Funahashi H. , Ekwall H. , Johannisson A.

An overview is presented on the structure and function of the pig oviduct in relation to sperm capacitation and oocyte development in vivo. In pigs, a functional sperm reservoir is established in the uterotubal junction-isthmus when sperm deposition occurs before ovulation. Capacitation is assumed to occur in this location, and spermatozoa progress towards the ampullaryisthmic junction at about the time of ovulation as a consequence of capacitation and hyperacti...

bp0016cpr17 | Gestation and Parturition | CPR2001

Causes and conseq uences of fetal growth retardation in pigs

Ashworth C. J . , Finch A. M. , Page K. R. , Nwagwu M. O. , McArdle H. J.

In pigs, as in other species, fetal growth retardation is associated with reduced birth weight and increased risk of fetal and neonatal death. As there are few opportunities after birth to remedy the detrimental effects of low birth weight, it is important to understand both the intrinsic and extrinsic factors associated with inadequate fetal growth and to determine when growth retarded fetuses deviate from the growth trajectory of their normal sized littermates. Inadequately ...

bp0016cpr20 | New Technologies | CPR2001

Applying functional genomics research to the study of pig reproduction

Pomp D. , Caetano A. R. , Bertani A. R. , Gladney C. D. , Johnson R. K.

Functional genomics is an experimental approach that incorporates genomewide or system-wide experimentation, expanding the scope of biological investigation from studying single genes to studying potentially all genes at once in a systematic manner. This technology is highly appealing because of its high throughput and relatively low cost. Furthermore, analysis of gene expression using microarrays is likely to be more biologically relevant than the conventional paradigm ...

bp0006rdr21 | Embryo Technologies | REDR2006

Nuclear reprogramming by somatic cell nuclear transfer – the cattle story

Tian XC , Smith SL , Zhang SQ , Kubota C , Curchoe C , Xue F , Yang L , Du F , Sung L-Y , Yang X

Somatic cell nuclear transfer (cloning) returns a differentiated cell to a totipotent status; a process termed nuclear reprogramming. Nuclear transfer has potential applications in agriculture and biomedicine, but is limited by low efficiency. To understand the deficiencies of nuclear reprogramming, our research has focused on both candidate genes (imprinted and X-linked genes) and global gene expression patterns in cloned bovine embryos/offspring as compared to those generate...

bp0006rdr14 | Reproductive Manangement | REDR2006

Technologies for fixed-time artificial insemination and their influence on reproductive performance of Bos indicus cattle

Bó GA , Cutaia L , Peres LC , Pindnato D , Maraña D , Baruselli PS

The adaptation of Bos indicus cattle to tropical and subtropical environments has led to their widespread distribution around the world. Although artificial insemination (AI) is one of the best alternatives to introduce new genetics into Bos indicus herds, the peculiarity of their temperament and the tendency to show short oestrus (many of them during the night) greatly affects the effectiveness of genetic improvement programs. Therefore, the most useful alte...

bp0008rdr29 | Pathophysiology and Health | REDR2014

Uterine infection and immunity in cattle

Sheldon Iain Martin , Price Jennifer C , Turner Matthew L , Bromfield John J , Cronin James G

Summary. Microbes commonly infect the female genital tract of cattle, causing uterine disease, abortion, and infertility. In particular, postpartum uterine disease develops in about 40% of dairy cows following infections with Gram-negative Escherichia coli and Gram-positive bacteria, such as Trueperella pyogenes. These infections damage tissues and cause inflammation in the endometrium, and perturb follicle growth and function in the ovar...

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 ...