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Parental dietary conditions can influence the metabolic traits of offspring. In mice, paternal consumption of low protein diet alters cholesterol and lipid metabolism of progeny. Here, we examine RNA species expressed in male reproductive tissues of mice. Protein restriction leads to altered levels ...
ORGANISM(S): Mus musculus 
Parental dietary conditions can influence the metabolic traits of offspring. In mice, paternal consumption of low protein diet alters cholesterol and lipid metabolism of progeny. Here, we examine RNA species expressed in male reproductive tissues of mice. Protein restriction leads to altered levels ...
ORGANISM(S): Mus musculus 
Mouse Sperm Proteomic Profiling - University of Newcastle - Dr. Matt Dun
ORGANISM(S): Mus Musculus (ncbitaxon:10090) 
2018-06-24 | MSV000082497 | MassIVE
In a reproductive strategy that is considered unique to the mammalian lineage, spermatozoa must undergo a series of physiological changes, termed capacitation, in the female reproductive tract prior to developing their capacity to fertilize an ovum. Here, we have employed a comparative proteomic str...
ORGANISM(S): Crocodylus Porosus (ncbitaxon:8502) 
2018-04-08 | MSV000082258 | MassIVE
In vitro maturation (IVM) oocyte is a key component of assisted reproduction in pigs. Asynchronous nucleoplasmic maturation and incomplete cytoplasmic maturation is one of the key factors for impaired maturation and quality of oocytes matured in vitro. Although Single-omics techniques have been appl...
2025-08-27 | MTBLS12325 | MetaboLights
Parental dietary conditions can influence the metabolic traits of offspring. In mice, paternal consumption of low protein diet alters cholesterol and lipid metabolism of progeny. Here, we examine RNA species expressed in male reproductive tissues of mice. Protein restriction leads to altered levels ...
ORGANISM(S): Mus musculus 
Parental dietary conditions can influence the metabolic traits of offspring. In mice, paternal consumption of low protein diet alters cholesterol and lipid metabolism of progeny. Here, we examine RNA species expressed in male reproductive tissues of mice. Protein restriction leads to altered levels ...
ORGANISM(S): Mus musculus 
While assisted reproductive technologies (ARTs) are widely used in domestic animals, successful implementation of ARTs to conserve wildlife species remains challenging. In macropods, crucial aspects of fundamental reproductive biology, including changes induced by epididymal maturation, remain unkno...
ORGANISM(S): Macropus giganteus 
2025-09-29 | PXD064577 | Pride
Mammalian spermatogenesis involves a series of events during which germ cells differentiate into immature sperm cells. Following spermatogenesis in the seminiferous tubules, sperm undergo post-testicular maturation where they suffer extensive remodelling of their proteome culminating in the acquisit...
ORGANISM(S): Bos taurus (Bovine) 
2026-01-28 | PXD066938 | Pride
Mammalian metaphase II (mII) exit and embryogenesis are induced at fertilization by a signal thought to come from the sperm protein, phospholipase C-zeta (PLCZ1). Meiotic progression can also be triggered without sperm, as in parthenogenesis, although the classic mouse in vivo parthenogenetic model...
ORGANISM(S): Mus musculus 
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