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...

bp0019cpr17 | Gestation Elicited | CPR2013

Application of RNA-seq transcriptomic analysis to reproductive physiology of the pig: Insights into differential trophoblast function within the late gestation porcine placenta

McNeel Anthony K. , Chen Celine , Schroeder Steven , Sonstegard Tad , Dawson Harry , Vallet Jeffrey L.

Next generation DNA sequencing is a high throughput method of sequencing DNA samples in parallel. During the last 10 years, this technology has expanded to include sequencing and quantification of an entire transcriptome. The advantage of this method of transcriptome analysis is that it allows the investigator to detect previously unknown genes and splice variants as well as detect potential DNA polymorphisms. Application of this technology, especially when used to perfo...

bp0003rdr10 | Development of the Reproductive Axis | REDR1994

Development of the sheep ovary during fetal and early neonatal life and the effect of fecundity genes

McNatty KP , Smith P , Hudson NL , Heath DA , Tisdall DJ , O W-S , Braw-Tal R

In female sheep fetuses, the mesonephros and genital ridge can be identified at days 20 and 23 of gestation (term = 145 days), respectively. Moreover oogonia can be observed at the genital ridge from as early as day 23. Around day 55 of gestation, some germ cells enter meiosis coincident with the arrival of mesonephric-derived somatic cells (i.e. the rete ovarii). From days 75, 100, 120 and 135 of gestation, primordial (one layer of flattened granulosa cells), primary (one...

bp0004rdr3 | Follicular Development | REDR1998

Molecular mechanisms regulating follicular recruitment and selection

Webb R , Campbell BK , Garverick HA , Gong JG , Gutierrez CG , Armstrong DG

Ovarian follicular growth and development is an integrated process encompassing both extraovarian signals, such as gonadotrophins and metabolic hormones, and intraovarian factors. Follicular development has been classified into gonadotrophin-independent and -dependent phases. In the latter, FSH provides the primary drive for follicular recruitment and LH is required for continued development of follicles to the preovulatory stage. A transient increase in circulating FSH preced...

bp0005rdr7 | Gamete-Somatic Cell Interactions | REDR2002

Mechanisms regulating follicular development and selection of the dominant follicle

Webb R , Nicholas B , Gong JG , Campbell BK , Gutierrez CG , Garverick HA , Armstrong DG

Reproductive function is an integrated process encompassing both extraovarian signals, such as gonadotrophins, and intrafollicular factors, such as locally produced growth factors. Initiation of primordial follicle growth and the early stages of folliculogenesis can occur without gonadotrophins. However, in vivo and in vitro studies indicate that FSH may stimulate the rate of preantral follicle growth and that it can take only 3 months for a primordial follic...

bp0006rdr2 | Male Reproduction | REDR2006

Seminal plasma effects on sperm handling and female fertility

Maxwell WMC , de#Graaf SP , Ghaoui R#El-Hajj , Evans G

The components of ruminant seminal plasma and their influence on the fertility of spermatozoa are reviewed. Seminal plasma can both inhibit and stimulate sperm function and fertility through the multifunctional actions of organic and inorganic components. These effects are now better understood because the composition of the seminal plasma, including its protein content and that of other structures, specifically membrane vesicles, has been clarified. Spermatozoa gain motility ...

bp0010ised13 | (1) | ISED2019

Trophectoderm and embryoblast proliferate at slow pace in the course of embryonic diapause in the roe deer (Capreolus capreolus)

Rüegg AB , Bernal S , Moser FN , Rutzen I , Ulbrich SE

The European roe deer (Capreolus capreolus) was the first mammal in which embryonic diapause has been described. While diapause is characterized by a complete developmental arrest in some species, roe deer blastocysts show a very slow, yet continuous growth. To date, it is neither known whether this growth is accompanied by developmental progression nor whether it is uniform in both, the trophectoderm (TE) and the inner cell mass (ICM). We collected roe deer blastocysts during...

bp0017cpr7 | (1) | CPR2005

The growth hormone/prolactin gene family in ruminant placentae

Raeside J. I. , Christie H. L. , Renaud R. L. , Sinclair P. A.

A review of the remarkable production of steroids by the testes of the boar is presented, with the principal aims of highlighting the achievements of the Leydig cells and, at the same time, pointing to the considerable deficiencies in our understanding of its biological relevance. The onset of gonadal steroidogenesis at an early stage of sex differentiation and the pattern of pre- and postnatal secretion of steroids are outlined. This is followed by a list of steroids id...

bp0018cpr4 | Physiological Roles of The Boar Ejaculate | CPR2009

Recent advances in boar semen cryopreservation

Rath D. , Bathgate R. , Rodriguez-Martinez H. , Roca J. , Strzezek J. , Waberski D.

Since 35 years ago boar semen has been frozen and used for artificial insemination (Al). However, fertility of cryopreserved porcine sperm has consistently been low as boar sperm are more sensitive to cellular stress imposed by changing osmotic balance, oxidative stress, low-temperature exposure, cryo-protectant intoxication etc. and are less able to compensate for these deficiencies at commercially applicable dosages. Additionally, differences in sperm freezability amon...