首页> 外文期刊>Behavior Genetics: An International Journal Devoted to Research in the Inheritance of Behavior in Animals and Man >Large-scale gene expression profiling of discrete brain regions: potential, limitations, and application in genetics of aggressive behavior.
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Large-scale gene expression profiling of discrete brain regions: potential, limitations, and application in genetics of aggressive behavior.

机译:离散脑区域的大规模基因表达谱:潜力,局限性以及攻击行为的遗传学应用。

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摘要

Many behavioral geneticists are interested in unraveling the molecular mechanisms underlying aggressive behavior. So far, most scientists have based their search for aggression-related genes on a preliminary functional hypothesis. Large-scale gene expression profiling techniques, such as serial analysis of gene expression (SAGE) and DNA microarrays, now enable the screening of expression levels of thousands of genes simultaneously, allowing the identification of new candidate aggression-related genes expressed in brain and thus the generation of new hypotheses. However, expression profiling in the brain is challenging, as brain is a complex heterogeneous tissue where large numbers of genes are expressed and relatively small changes in gene expression occur. In this special issue, we focus on the principles of SAGE and DNA microarrays, as well as their advantages and disadvantages and application to analysis in brain tissue in order to identify aggression-related genes.
机译:许多行为遗传学家对揭示攻击行为的分子机制感兴趣。到目前为止,大多数科学家都基于初步的功能假设来寻找与侵略相关的基因。大规模的基因表达谱分析技术,例如基因表达序列分析(SAGE)和DNA微阵列,现在可以同时筛选成千上万个基因的表达水平,从而可以鉴定在大脑中表达的新的与攻击性相关的候选基因,因此新假设的产生。但是,大脑中的表达谱分析具有挑战性,因为大脑是一个复杂的异质组织,其中表达大量基因,并且基因表达发生相对较小的变化。在本期特刊中,我们重点介绍SAGE和DNA微阵列的原理,以及它们的优缺点和在脑组织分析中的应用,以识别与攻击相关的基因。

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