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

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 ...

bp0014cpr20 | Components of Prolificacy in Pigs | CPR1993

Uterine function in Meishan pigs

Christenson R. K. , Vallet J. L. , Leymaster K. A. , Young L. D.

The Meishan pig provides a biological model with the genetic capacity to express a high prolificacy. This prolificacy can be partially attributed to a higher ovulation rate and a higher rate of prenatal survival at a given ovulation rate throughout gestation than in European breeds. Both early embryonic survival (factors inherent to the ovum and uterus, which occur before day 25 of gestation) and uterine capacity (factors inherent to uterine limitation, which occur from 3...

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 ...

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...

bp0002rdr4 | Maternal Recognition of Pregnancy | REDR1990

Physiological mechanisms of pregnancy recognition in ruminants

Bazer FW , Thatcher WW , Hansen PJ , Mirando MA , Ott TL , Plante C

Summary. Maternal recognition of pregnancy in sheep, cattle and goats involves physiological mechanisms that result in protection of corpora lutea from luteolysis by modification or inhibition of uterine production of luteolytic pulses of prostaglandin (PG) F-2α. Ovine, bovine and caprine luteal cells release oxytocin in a pulsatile manner during late dioestrus. Oxytocin then binds to its endometrial receptors and initiates luteolytic pulses of PGF-2&#945...

bp0003rdr22 | Regulation of Gonadotrophin Secretion | REDR1994

Dopaminergic control of LH secretion by the Al5 nucleus in anoestrous ewes

Thiery JC , Gayrard V , Le Corre S , Viguié C , Martin GB , Chemineau P , Malpaux B

Annual variations in the secretion of LH are responsible for seasonal changes in ovulatory activity in ewes. This hormonal pattern reflects an increase in the intensity of the negative feedback exerted by oestradiol under long days. Neuro-pharmacological studies have shown that this inhibition of LH secretion involves activation of catecholaminergic systems from preoptic and mediobasal hypothalamus (MBH) by oestradiol during anoestrus, and that 5-hydroxytryptamine inputs may a...

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...

bp0015cpr11 | Embryonic and Fetal Development in The Pig | CPR1997

Extracellular matrix and the implantation cascade in pigs

Burghardt R. C. , Bowen J. A. , Newton G. R. , Bazer F. W.

The structural and functional alterations of uterine epithelial cells that permit the apical-apical union of conceptus and uterine epithelium are complex and are likely to involve many different adhesion molecules with distinct but inter-related functions. A number of changes in the molecular composition at the apical surface of uterine epithelial cells associated with the transition from the pre-receptive to the receptive state in the pig uterus are reviewed. Molecules t...