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Homosexuality via canalized sexual development: A testing protocol for a new epigenetic model

机译:通过管道性发育导致的同性恋:新表观遗传模型的测试方案

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We recently synthesized and reinterpreted published studies to advance an epigenetic model for the development of homosexuality (HS). The model is based on epigenetic marks laid down in response to the XX vs. XY karyotype in embryonic stem cells. These marks boost sensitivity to testosterone in XY fetuses and lower it in XX fetuses, thereby canalizing sexual development. Our model predicts that a subset of these canalizing epigenetic marks stochastically carry over across generations and lead to mosaicism for sexual development in opposite-sex offspring the homosexual phenotype being one such outcome. Here, we begin by outlining why HS has been under-appreciated as a commonplace phenomenon in nature, and how this trend is currently being reversedin the field of neurobiology. We next briefly describe our epigenetic model of HS, develop a set of predictions, and describe how epigenetic profiles of human stem cells can provide for a strong test of the model.
机译:我们最近合成并重新诠释了已发表的研究,以推进发展同性恋(HS)的表观遗传模型。该模型基于响应于胚胎干细胞中XX与XY核型而形成的表观遗传标记。这些标记增强了XY胎儿对睾丸激素的敏感性,并降低了XX胎儿对睾丸激素的敏感性,从而促进了性发育。我们的模型预测,这些渠化表观遗传标记的子集随机代代相传,并导致异性后代的性发育镶嵌症,同性恋表型就是其中之一。在这里,我们首先概述为什么HS在自然界中没有被普遍理解为普遍现象,以及这种趋势目前在神经生物学领域中是如何被逆转的。接下来,我们将简要描述HS的表观遗传模型,制定一组预测,并描述人类干细胞的表观遗传概况如何为该模型提供强大的测试。

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