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首页> 外文期刊>Frontiers in neuroendocrinology >Mouse model systems to study sex chromosome genes and behavior: Relevance to humans
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Mouse model systems to study sex chromosome genes and behavior: Relevance to humans

机译:研究性染色体基因和行为的小鼠模型系统:与人类的相关性

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Sex chromosome genes directly influence sex differences in behavior. The discovery of the Sry gene on the Y chromosome (Gubbay et al., 1990; Koopman et al., 1990) substantiated the sex chromosome mechanistic link to sex differences. Moreover, the pronounced connection between X chromosome gene mutations and mental illness produces a strong sex bias in these diseases. Yet, the dominant explanation for sex differences continues to be the gonadal hormones. Here we review progress made on behavioral differences in mouse models that uncouple sex chromosome complement from gonadal sex. We conclude that many social and cognitive behaviors are modified by sex chromosome complement, and discuss the implications for human research. Future directions need to include identification of the genes involved and interactions with these genes and gonadal hormones. (C) 2014 Elsevier Inc. All rights reserved.
机译:性染色体基因直接影响行为的性别差异。 Y染色体上Sry基因的发现(Gubbay等,1990; Koopman等,1990)证实了性染色体与性别差异的机制联系。此外,X染色体基因突变与精神疾病之间的明显联系在这些疾病中产生了强烈的性别偏见。然而,性别差异的主要解释仍然是性腺激素。在这里,我们将对性行为互补在小鼠模型上的行为差异进行回顾,该行为模型将性染色体互补与性腺性行为分离。我们得出结论,许多社会和认知行为被性染色体互补所修饰,并讨论了对人类研究的意义。未来的方向需要包括鉴定涉及的基因以及与这些基因和性腺激素的相互作用。 (C)2014 Elsevier Inc.保留所有权利。

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