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Maternal genetic effect in DNA analysis: Egg on your traits

机译:DNA分析中的母体遗传效应:鸡蛋对性状的影响

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A dilemma of penetrance parallels the uncertainty principle as array analyses uncover a disturbing continuity of human molecular variation. Among mechanisms for altered penetrance is maternal genetic effect, hypothesized to explain mother-offspring discordance from 12/13 translocation [Wilson et al., 1991] and important to consider when confronting identical genetic changes in normal mothers and their abnormal children. A boy with developmental delays, autistic features, minimal dysmorphology, and maternally inherited 17p13.3 microduplication could exemplify maternal genetic effect, as could a boy with altered brain pattern and maternally inherited Sonic Hedgehog mutation reported by Schell-Apacik et al. [2009]. Maternal genetic effects, characterized in fly, fish, and mouse, are important to consider in human DNA analysis so that identical findings in mother and child are not routinely dismissed as benign variations. Suspect families can define relevant maternal-zygote transition (MZT) genes, provide assays for oocyte function and disruption, and shift anomaly emphasis from pattern recognition to pattern restoration.
机译:在阵列分析揭示人类分子变异的令人不安的连续性时,渗透率的难题与不确定性原理平行。改变外在表现的机制之一是母体遗传效应,被认为可以解释12/13易位引起的母子不和谐[Wilson et al。,1991],并且在面对正常母亲及其异常子女的相同遗传变化时必须加以考虑。具有发育迟缓,自闭症特征,极少的畸形和男孩遗传的17p13.3微复制的男孩可以例证母亲的遗传效应,正如Schell-Apacik等人报道的脑模式改变和母亲遗传的Sonic Hedgehog突变的男孩。 [2009]。在人类DNA分析中必须考虑到以蝇,鱼和老鼠为特征的母体遗传效应,因此母婴中的相同发现通常不会被视为良性变异。可疑家庭可以定义相关的母体-合子转变(MZT)基因,提供卵母细胞功能和破坏的检测方法,并将异常重点从模式识别转移到模式恢复。

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