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

bp0018cpr29 | Control of Prenatal Development | CPR2009

Cellular and molecular events in early and mid gestation porcine implantation sites: a review

Croy B.A. , Wessels J.M. , Linton N.F. , van den Heuvel M. , Edwards A.K. , Tayade C.

Commercial, North American pork breeds (Sus sada) experience significant loss of genetically-normal conceptuses during the peri-implantation (attachment) period and at mid-gestation (day 50 to 90 of the 114 day porcine gestation interval). Although exact causes for these losses are not defined, asynchronous in-utero development and deficits in vascularization of the endometrium and placenta appear to be involved. Understanding of normal maternal-fetal dialogue is critica...

bp0003rdr30 | Environmental and Metabolic Interactions | REDR1994

Endocrine basis for puberty in heifers and ewes

Kinder JE , Bergfeld EGM , Wehrman ME , Peters KE , Kojima FN

Maturation processes that culminate in puberty and sexual maturity are initiated before birth, continue through prepuberty (> 50 days before puberty) and peripuberty (50 days before puberty) and are completed early after puberty. The hypothalamus is the primary site of change during transition to sexual maturity. Maturation of the hypothalamus results from decreased negative feedback of oestradiol that leads to increased frequency of release of LH pulses. Increased tonic r...

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...

bp0004rdr10 | Comparative Reproductive Function: Implications for Management | REDR1998

Implications of recent advances in reproductive physiology for reproductive management of goats

Chemineau P , Baril G , Leboeuf B , Maurel MC , Roy F , Pellicer-Rubio M , Malpaux B , Cognie Y

The control of reproduction in goats is interesting for technical reasons (synchronization of kiddings, adjustment to forage availability or to economy), and for genetic reasons (identification and dissemination of improved genotypes). The use of short-light rhythms leads to markedly increased production of semen per buck and prevents occurrence of a ‘resting’ season. Recent identification of a bulbourethral lipase in goat spermatozoa opens new perspectives in sperm ...

bp0015cpr17 | Advances in Biotechnology in Pig Reproduction | CPR1997

Developments in transgenictechniques in pigs

Nottle M. B. , Nagashima H. , Verma P. J. , Du Z. T. , Grupen Z. T. , Ashman Z. T. , Macilfatrick S.

Manipulation of the pig genome is currently restricted to the random insertion of new DNA using pronuclear microinjection. This method suffers from a number of inherent limitations, the majority of which result from the inability to control the site at which the transgene becomes integrated. These drawbacks, together with the need to be able to target existing genes, will result in the replacement of pronuclear injection by new methods that have the capability to direct i...

bp0019cpr6 | Oocyte-embryo Interplay with in vitro or in vivo milieu | CPR2013

Transcriptional profiling of oocyte maturation and embryonic development elucidates metabolism and control of development

Prather Randall S. , Brown Alana , Spate Lee D. , Redel Bethany K. , Whitworth Kristin M. , Whyte Jeffrey J.

With the advent of next generation sequencing platforms (RNA-seq), transcriptional profiling permits the characterization of millions of RNAs from even the most limiting samples like early embryos. High-throughput RNA-seq can generate over 600 gigabases (Gb) in a single sequencing run, providing a near-complete record of all of the genes expressed in a sample at the time of collection. Condensing and finding coherence in the immense amount of raw data generated by transc...

bp0005rdr25 | Genes Controlling Reproductive Performance | REDR2002

Oocyte-derived growth factors and ovulation rate in sheep

McNatty KP , Juengel JL , Wilson T , Galloway SM , Davis GH , Hudson NL , Moeller CL , Cranfield M , Reader KL , Laitinen MPE , Groome NP , Sawyer HR , Ritvos O

The physiological mechanisms controlling ovulation rate in mammals involve a complex exchange of endocrine signals between the pituitary gland and the ovary, and a localized exchange of intraovarian hormones between the oocyte and its adjacent somatic cells. The discoveries in sheep of mutations in bone morphogenetic protein 15 (BMP15) and bone morphogenetic protein receptor type IB (BMPR-IB) together with recent findings on the physiological effects of growth differentiation ...

bp0005rdr26 | Genes Controlling Reproductive Performance | REDR2002

Prolificacy genes in sheep: the French genetic programmes

Mulsant P , Lecerf F , Fabre S , Bodin L , Thimonier J , Monget P , Lanneluc I , Monniaux D , Teyssier J , Elsen J-M

It has been demonstrated that variations in litter size or ovulation rate in different breeds of sheep can be associated with the segregation of several major genes. This set of natural mutants constitutes a valuable resource to determine key points in the biochemical pathways controlling the development of ovarian follicles. The French genetic programmes were devised to identify two of these genes: the Booroola (FecB) and Lacaune genes. The FecB pro...

bp0008rdr2 | Genomes, Proteomics, Metabolomics | REDR2014

Genetic improvement in cattle — are we sacrificing reproduction in favor of production?

Cushman Robert A , McNeel Anthony K , Tait Jr. Robert G , Lindholm-Perry Amanda K , Perry George A , Snelling Warren M , Bennett Gary L

Summary. Reproductive traits can range from lowly to moderately heritable. Genomic technologies provide a powerful tool for improving selection for traits that are lowly heritable, sex-linked, or not expressed until later in life. Therefore, as genomic technologies become a part of selection decisions, there is a critical need to understand how specific gene variants affect reproductive traits in cattle. Both classical quantitative genetics approaches and geno...