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

bp0012cpr3 | Endocrinology of Follicular Development | CPR1985

Control of follicular development during and after lactation in sows

Britt J. H. , Armstrong J. D. , Cox Nancy M. , Esbenshade Nancy M.

Summary. Follicular development during early lactation in the sow is characterized by a large population of small-sized follicles and a small population of medium-sized follicles. As lactation progresses there is a gradual shift in number of follicles into medium- or large-sized categories and the percentage of follicles classified as atretic declines. Weaning at birth often leads to aberrant follicular development, apparently because the positive feedbac...

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...

bp0013cpr21 | Early Pregnancy | CPR1989

Embryonicsteroids and the establishment of pregnancy in pigs

Geisert R. D. , Zavyt M. T. , Moffattt R. J. , Blair R. M. , Yellin T.

Summary. In the pig, establishment of pregnancy begins about 11-12 days after the start of oestrus. The ability of pig conceptuses to synthesize and release oestrogens during this period, as well as the ability of exogenous oestrogens to induce pseudopregnancy when administered from Day 11-15 of the oestrous cycle, provide evidence for an involvement of oestrogen in the maternal recognition of pregnancy in the sow. Oestrogen derived from the conceptus or ...

bp0016cpr13 | Embryonic and Placental Development | CPR2001

Gene expression during pre- and peri-implantation embryonic development in pigs

Maddox-Hyttel P. , Dinnyes A. , Laurincik J. , Rath D. , Niemann H. , Rosenkranz H. , Wilmut H.

Embryo technological procedures such as in vitro production and cloning by nuclear transfer are not as advanced in pigs as in cattle and cannot yet be applied under field conditions. The present paper focuses on genome activation in in vivo-derived, in vitro-produced and nuclear transfer pig embryos with special emphasis on the development of embryonic nucleoli, where the ribosomal RNA (rRNA) genes transcribed can be used as markers for genome ...

bp0005rdr10 | Reproductive Technology | REDR2002

The use of genomics and proteomics to understand oocyte and early embryo functions in farm animals

Sirard M-A , Dufort I , Coenen K , Tremblay K , Massicotte L , Robert C

Oocyte maturation, a simple and visible phenomenon, is about to be transformed into a complex and not so visible molecular cascade leading to the marking of the following generation. The study of oocyte maturation in mammals is progressively changing towards a more molecular approach. This review addresses the main challenges in the study of RNA extraction and quantification in oocytes and embryos as well as the importance of the mRNA maturation. The identification of specific...

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...

bp0013cpr10 | Ovarian Function | CPR1989

The synthesis and actions of steroids and prostaglandins during follicular maturation in the pig

Ainsworth L. , Tsangt B. K. , Downey B. R. , Marcus G. J.

Summary. Our understanding of the synthesis and production of follicular steroids and prostaglandins (PG) in the pig is based largely on in-vitro studies with granulosa and theca interna tissues obtained from Graafian follicles at various stages of maturation. As the follicle enlarges before the LH surge, granulosa cells exhibit a decrease in FSH receptors and are less responsive to FSH in terms of cAMP production. Concurrently, there is an increase in gr...

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 ...