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Thus, the composition of the fatty acid supply to the fetus is mainly determined by maternal lipid profile and suggests that modifications of maternal diet or metabolic homeostasis will affect delivery of lipid substrates to the fetus [87], [88].
They suggest that appropriate modifications of maternal diet may prevent such defects in humans.
They provide a potential mechanism for the increased risk of cardiovascular and palatal defects observed with human maternal obesity (21), and suggest that appropriate modifications of maternal diet may prevent such defects in humans.
The mechanistic basis of these alterations is not yet known, although it is plausible that epigenetic modifications of maternal tissues may influence metabolism later in life and, perhaps, during subsequent pregnancies.
In our previous work that demonstrated post-translational modifications of maternal proteins, we used a similar approach to perform large-scale protein identification in mature mouse oocytes, and we successfully identified a total of 380 different proteins corresponding to 869 proteins spots [ 17].
Similar(54)
Composite species may be inferred to have been derived from maternal mitotype inheritance and the following modification of maternal mitotype.
Yet, so far, no effect modification of maternal depressive symptoms on treatment with video feedback has been reported [ 42, 46].
1 2 The lower risk has also been attributed to smoother trophoblastic invasion after modification of maternal spiral arteries during the first pregnancy.
The Middle gene product AS 1490 is the putative homolog for the Drosophila gene product vasa (CG3506), an ATP dependent helicase involved in pole plasm assembly that may also be involved in translational modification of maternal mRNAs [ 72].
These findings highlight the importance of dietary choices including the potential dangers of pregnant and lactating mothers over supplementing with fish oil pills, which could modify their offspring's potential disease profiles later in life through the passage and modification of maternal microbes.
The dissimilar gonadal environment enables sex-dependent epigenetic modifications of paternal and maternal DNA such as reactivation of the X chromosome in female germ cells [ 3, 4], inactivation of a single X chromosome in pachytene spermatocytes [ 5- 7] or differential establishment of imprinting marks on paternally or maternally imprinted genes [ 8, 9].
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