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However, only the female wildtype lines displayed a strong second wave of germ cell differentiation at day 35.
The high expression of pluripotency, epigenetic regulator, and early and late germ cell-associated genes at early time points of differentiation in both male and female wildtype and Dazl heterozygous lines suggests that mESC lines that contain at least one copy of Dazl are able to undergo an initial wave of germ cell differentiation.
We conclude that as in the male lines, wildtype and Dazl heterozygous female lines displayed an initial wave of germ cell development through day 14 of differentiation, followed by a second wave at day 35, seen more strongly in wildtype samples.
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This suggests that this loss is compensated later during postnatal establishment of mature spermatogenesis involving waves of germ cell proliferation.
An early wave of male germ cell apoptosis occurs during prepubertal development and is thought to keep a proper balance between germ cells and supporting Sertoli cells.
Although these mice can complete spermatogenesis, leading to the production of normal sperm during the first wave of spermatogenesis, the number of germ cells is reduced, and spermatogonial proliferation is defective at an early age.
These results suggest that the male wildtype and Dazl heterozygous lines are undergoing an initial wave of differentiation towards the germ cell lineage, which is reduced in the Dazl null lines, and that relative to wildtype, male cells with Dazl ablation may have a slightly higher level of cell death.
The first occurs following the global demethylation event that precedes embryo implantation, and the second following a similar wave of demethylation in developing primordial germ cells (PGCs).
Since there are three waves of apoptosis occurring at the embryonic and the first larval stages and the germ cells of gonad in adults of C. elegans [ 39], we anticipate that this method can be further used to extend our knowledge of the roles and mechanisms of DNase II activity in the third wave of apoptosis in C. elegans germ cells.
The next wave of cleansers may kill all germs, using a biochemical process of elimination, as opposed to scrubbing detergents.
The next wave of cleansers may kill all germs by using a biochemical process of elimination, as opposed to scrubbing detergents.
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