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

bp0013cpr16 | Gamete Physiology | CPR1989

Cloning of embryos

Prather R. S. , First N. L. ,

Summary. Nuclear transfer for the study of differentiation in amphibians has been used since the 1950s, but not until recently have the same procedures been applied successfully to some mammals. Nuclear transfer, as developed for the amphibian, is successful in sheep, cattle, rabbit, and pig, but not mouse embryos. This fact is discussed in relation to the species-specific timing of the activation of the zygotic genome. Nuclear transfer to an oocyte presu...

bp0017cpr18 | (1) | CPR2005

Harnessing the biology of the oviduct for the benefit of artificial insemination

Holt W.V. , Elliott R.M.A. , Fazeli A. , Sostaric E. , Georgiou A.S. , Satake N. , Prathalingam N. , Watson P.F.

Spermatozoa fulfil a single role, namely achieving syngamy by transporting the haploid genome to their counterpart gamete, the oocyte. Simple as this may seem, it is fraught with many difficulties, especially in the face of biological processes that enable females to select spermatozoa after they have mated multiply with several males. Conversely, the female reproductive tract sequesters a privileged sperm subpopulation in the oviductal isthmus for variable periods of ti...

bp0004rdr17 | The Corpus Luteum | REDR1998

Intraovarian regulation of luteolysis

Meidan R , Milvae RA , Weiss S , Levy N , Friedman A

The corpus luteum is a transient gland, which is only functional for 17–18 days in the cyclic cow or for up to 200 days in the pregnant cow. Regression of the corpus luteum is essential for normal cyclicity as it allows the development of a new ovulatory follicle, whereas prevention of luteolysis is necessary for the maintenance of pregnancy. Evidence acquired over the past three decades indicated that PGF2α is the luteolytic hormone in ruminants. Neverthe...

bp0005rdr12 | Pre-natal Programming of Lifetime Productivity and Health | REDR2002

Gene expression in the developing embryo and fetus

Taylor J , Fairburn H , Beaujean N , Meehan R , Young L

Determining the stage- and tissue-specific patterns of gene expression shown by the embryo and fetus will provide information about the control of normal development. Identification of alterations in these patterns associated with specific abnormal phenotypes will also be informative regarding the underlying molecular mechanisms. In addition, qualitative and quantitative changes in gene expression that deviate from the norm may provide a potential marker system for predicting ...

bp0008rdr8 | Neuroendocrinology | REDR2014

The role of kisspeptin in reproductive function in the ewe

Smith Jeremy T , Hawken Penelope AR , Lehman Michael N , Martin Graeme B

Summary. Kisspeptin is a hypothalamic neuropeptide that is critical for fertility. In virtually all species, kisspeptin neurons stimulate gonadotrophin-releasing hormone (GnRH) secretion and act as transmitters for sex-steroid feedback to GnRH neurons. In sheep, kisspeptin neurons are located in the preoptic area and the arcuate nucleus (ARC), with the latter involved in both oestradiol positive and negative feedback regulation of GnRH. In addition, sheep are ...

bp0018cpr30 | Control of Prenatal Development | CPR2009

Functional genomic approaches for the study of fetal/placental development in swine with special emphasis on imprinted genes

Bischoff S.R. , Tsai S. , Hardison N. , Motsinger-Reift A.A. , Freking B.A. , Piedrahita J.A.

This chapter describes the application of functional genomic approaches to the study of imprinted genes in swine. While there are varied definitions of "functional genomics", in general they focus on the application of DNA microarrays, single nucleotide polymorphism (SNP) arrays, and other high coverage genomic analyses, and their combination with downstream methods of gene modification such as silencing RNA (siRNA) and viral and non-viral transfection. Between the initi...

bp0004rdr1 | Follicular Development | REDR1998

Control of early ovarian follicular development

McNatty KP , Heath DA , Lundy T , Fidler AE , Quirke L , O'Connell A , Smith P , Groome N , Tisdall DJ

Early follicular growth refers to the development of an ovarian follicle from the primordial to early antral phase. In sheep and cows these phases of growth can be classified by the configuration of granulosal cells in the largest cross–section of the follicle as types 1 (primordial), la (transitory) 2 (primary), 3 and 4 (preantral) and 5 (early antral). Follicles classified as type 1 may be highly variable within each species with respect to number of granulosal cells an...

bp0005rdr32 | Ruminant Models for Human Clinical Medicine | REDR2002

Domestic ruminants as models for the elucidation of the mechanisms controlling ovarian follicle development in humans

Campbell BK , Souza C , Gong J , Webb R , Kendall N , Marsters P , Robinson G , Mitchell A , Telfer EE , Baird DT

It is necessary to understand the basic physiology underlying the complex process of folliculogenesis to address common causes of infertility and to devise innovative strategies to increase the efficiency of assisted reproduction technologies. Availability of suitable ovarian tissue is a major constraint to research in this area in humans, and monovulatory domestic ruminants represent a physiologically relevant model to elucidate basic mechanisms before more focused clinical i...