869 resultados para Maternal inheritance


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In order to test the hypothesis that caesarean birth has negative consequences upon newly mothers’ satisfaction and perceptions, women delivering by caesarean birth (WCB) were compared with women delivering by vaginal birth (WVB). Subjects: 180 newly mothers; 93 WCB and 87 WVB. Instruments: A Socio-Demographic Questionnaire developed for this research, the Childbirth Perceptions Questionnaire and the Mother and Baby Scales. Results: WCB had significantly lower scores in perceptions of baby as alert/responsive and nearly significant lower scores for baby as alert during feeds. WVB showed a significantly higher level of satisfaction with delivery and conduct during labour, as also had significantly lower scores for perceptions of baby as irritable during feeds and for lack of confidence in feeds. After controlling for the kind of anesthesia received in labour, three conclusions must be taken into account: 1) between WCB with regional anaesthesia and WCB with general anaesthesia there is only one significant difference, with the former having higher scores for perception of baby as alert during feeds; 2) between WVB with regional anaesthesia and WVB with no anaesthesia there are only two significant differences, with the former having higher scores for lack of confidence in feeding and having lower scores for global confidence; 3) between WCB with regional anaesthesia and WVB with regional anaesthesia four significant differences emerge, with the former having a lower level of satisfaction with delivery and conduct in labour and having lower scores for perception of baby as alert responsive, and also having higher scores of perception of baby as irritable in feeds and higher scores for lack of confidence in feeding. Data seem compatible with the hypothesis that caesarean birth has some negative consequences upon mothers’ satisfaction and perceptions and, for this reason, psychological surveys should constitute a routine procedure in maternity hospitals, especially when newly mothers pertain to families affected by risks of psychological or social nature.

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Centromeres form the site of chromosome attachment to microtubules during mitosis. Identity of these loci is maintained epigenetically by nucleosomes containing the histone H3 variant CENP-A. Propagation of CENP-A chromatin is uncoupled from DNA replication initiating only during mitotic exit. We now demonstrate that inhibition of Cdk1 and Cdk2 activities is sufficient to trigger CENP-A assembly throughout the cell cycle in a manner dependent on the canonical CENP-A assembly machinery. We further show that the key CENP-A assembly factor Mis18BP1(HsKNL2) is phosphorylated in a cell cycle-dependent manner that controls its centromere localization during mitotic exit. These results strongly support a model in which the CENP-A assembly machinery is poised for activation throughout the cell cycle but kept in an inactive noncentromeric state by Cdk activity during S, G2, and M phases. Alleviation of this inhibition in G1 phase ensures tight coupling between DNA replication, cell division, and subsequent centromere maturation.

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Exposure to chronic stress is associated with an increased incidence of neuropsychiatric dysfunction. The current study evaluated two competing hypotheses, the cumulative stress and the match/mismatch hypothesis of neuropsychiatric dysfunction, using two paradigms relating to exposure to “stress”: pre-weaning maternal separation and post-weaning isolation-housing. C57BL/6 offspring were reared under four conditions: typical animal facility rearing (AFR, control), early handling (EH, daily 15 min separation from dam), maternal separation (MS, daily 4 hr separation from dam), and maternal and peer separation (MPS, daily 4 hr separation from dam and from littermates). After weaning, mice were either housed socially (2–3/cage) or in isolation (1/cage) and then tested for prepulse inhibition in adulthood. Isolation-housed MPS subjects displayed greater deficits in prepulse inhibition relative to socially-housed MPS subjects while socially-housed AFR subjects displayed greater deficits in prepulse inhibition relative to isolation-housed AFR subjects. The results indicate that these treatment conditions represent a potentially valuable model for evaluating the match/mismatch hypothesis in regards to neuropsychiatric dysfunction.

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Nongenetic inheritance mechanisms such as transgenerational plasticity (TGP) can buffer populations against rapid environmental change such as ocean warming. Yet, little is known about how long these effects persist and whether they are cumulative over generations. Here, we tested for adaptive TGP in response to simulated ocean warming across parental and grandparental generations of marine sticklebacks. Grandparents were acclimated for two months during reproductive conditioning, whereas parents experienced developmental acclimation, allowing us to compare the fitness consequences of short-term vs. prolonged exposure to elevated temperature across multiple generations. We found that reproductive output of F1 adults was primarily determined by maternal developmental temperature, but carry-over effects from grandparental acclimation environments resulted in cumulative negative effects of elevated temperature on hatching success. In very early stages of growth, F2 offspring reached larger sizes in their respective paternal and grandparental environment down the paternal line, suggesting that other factors than just the paternal genome may be transferred between generations. In later growth stages, maternal and maternal granddam environments strongly influenced offspring body size, but in opposing directions, indicating that the mechanism(s) underlying the transfer of environmental information may have differed between acute and developmental acclimation experienced by the two generations. Taken together, our results suggest that the fitness consequences of parental and grandparental TGP are highly context dependent, but will play an important role in mediating some of the impacts of rapid climate change in this system.

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Transgenerational effects can buffer populations against environmental change, yet little is known about underlying mechanisms, their persistence, or the influence of environmental cue timing. We investigated mitochondrial respiratory capacity (MRC) and gene expression of marine sticklebacks that experienced acute or developmental acclimation to simulated ocean warming (21°C) across three generations. Previous work showed that acute acclimation of grandmothers to 21°C led to lower (optimised) offspring MRCs. Here, developmental acclimation of mothers to 21°C led to higher, but more efficient offspring MRCs. Offspring with a 21°Cx17°C grandmother-mother environment mismatch showed metabolic compensation: their MRCs were as low as offspring with a 17°C thermal history across generations. Transcriptional analyses showed primarily maternal but also grandmaternal environment effects: genes involved in metabolism and mitochondrial protein biosynthesis were differentially expressed when mothers developed at 21°C, whereas 21°C grandmothers influenced genes involved in hemostasis and apoptosis. Genes involved in mitochondrial respiration all showed higher expression when mothers developed at 21° and lower expression in the 21°Cx17°C group, matching the phenotypic pattern for MRCs. Our study links transcriptomics to physiology under climate change, and demonstrates that mechanisms underlying transgenerational effects persist across multiple generations with specific outcomes depending on acclimation type and environmental mismatch between generations.

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side 2

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"Peck, M.G., and Melinkovich, P. (Eds.)"--P. [iv].

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Mode of access: Internet.

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At head of title: University of Adelaide. Commemoration address 1926.

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At head of title: Department of health for Scotland. Scientific advisory committee: Clinical subcommittee.