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Sperm epimutation biomarkers of obesity and pathologies following DDT induced epigenetic transgenerational inheritance of disease

机译:滴滴涕诱导的表观遗传性疾病遗传继发后肥胖和病理的精子表位生物标志物

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摘要

Dichlorodiphenyltrichloroethane (DDT) has previously been shown to promote the epigenetic transgenerational inheritance of adult onset disease in rats. The current study investigated the potential that sperm epimutation biomarkers can be used to identify ancestral induced transgenerational obesity and associated pathologies. Gestating F0 generational female rats were transiently exposed to DDT during fetal gonadal sex determination, and the incidence of adult-onset pathologies was assessed in the subsequent F1, F2, and F3 generations. In addition, sperm differential DNA methylation regions (DMRs) that were associated with specific pathologies in the transgenerational F3 generation males were investigated. There was an increase of testis disease and early-onset puberty in the F2 generation DDT lineage males. The F3 generation males and females had significant increases in the incidence of obesity and multiple disease. The F3 generation DDT males also had significant increases in testis disease, prostate disease, and late onset puberty. The F3 generation DDT females had increases in ovarian and kidney disease. Epigenetic alterations of the germline are required for the transgenerational inheritance of pathology. Therefore, the F3 generation sperm was collected to examine DMRs for the ancestrally exposed DDT male population. Unique sets of DMRs were associated with late onset puberty, prostate disease, kidney disease, testis disease, obesity, and multiple disease pathologies. Gene associations with the DMR were also identified. The epigenetic DMR signatures identified for these pathologies provide potential biomarkers for transgenerationally inherited disease susceptibility.
机译:先前已证明二氯二苯基三氯乙烷(DDT)可以促进大鼠成年疾病的表观遗传跨代遗传。目前的研究调查了精子表位变异生物标记物可用于识别祖先诱发的跨代肥胖症和相关病理的潜力。妊娠性F0代雌性大鼠在确定胎儿的性腺性别期间短暂暴露于DDT,并在随后的F1,F2和F3代中评估了成年发病的发生率。此外,还研究了与F3世代雄性动物特定病理相关的精子差异DNA甲基化区域(DMR)。 F2代DDT世系男性的睾丸疾病和青春期早发有所增加。 F3代男性和女性肥胖和多种疾病的发生率显着增加。 F3代DDT男性的睾丸疾病,前列腺疾病和青春期晚期也显着增加。 F3代DDT女性的卵巢和肾脏疾病有所增加。种系的表观遗传改变是病理学的世代传承。因此,收集F3代精子以检查祖先暴露的DDT男性人群的DMR。独特的DMR集与青春期晚期,前列腺疾病,肾脏疾病,睾丸疾病,肥胖症和多种疾病病理相关。还确定了与DMR的基因关联。为这些病理学确定的表观遗传学DMR标记为跨代遗传的疾病易感性提供了潜在的生物标记。

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