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New approaches to the genetic analysis of neuroticism and anxiety.

机译:神经质和焦虑症基因分析的新方法。

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The completion of the human genome project and the complementary genome projects for other species has broadened the scope for novel bioinformatic approaches to quantitative trait locus (QTL) identification. A key issue for quantitative trait nucleotide (QTN) identification is progressing from a large QTL peak, spanning perhaps 50 cM and many hundreds of genes, to a gene or nucleotide variant which is responsible for that QTL effect. The complementary use of mouse models to dissect large syntenic loci in humans is a powerful method for reducing QTL intervals to the order of 1 Mb. This paper presents an overview of the approaches used in our laboratory to ultra-fine map QTLs for anxiety-related traits, and to identify quantitative trait genes (QTG). As new genetic techniques and statistical approaches arise, we are getting closer to identifying those long sought after QTNs.
机译:人类基因组计划和其他物种互补基因组计划的完成,拓宽了用于定量性状基因座(QTL)鉴定的新型生物信息学方法的范围。定量性状核苷酸(QTN)鉴定的一个关键问题是,从一个可能跨越50 cM和数百个基因的大QTL峰发展为一个负责QTL效应的基因或核苷酸变体。鼠标模型的互补使用以解剖人的大同基因位点是一种将QTL间隔降低至1 Mb数量级的有效方法。本文概述了在我们实验室中用于对与焦虑相关的性状进行超精细定位的QTL以及鉴定定量性状基因(QTG)的方法。随着新的遗传技术和统计方法的出现,我们越来越接近于确定那些长期以来一直追求的QTN。

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