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人类虹膜颜色和图案的遗传学

Genetics of human iris colour and patterns.

作者信息

Sturm Richard A, Larsson Mats

机构信息

Melanogenix Group, Institute for Molecular Bioscience, The University of Queensland, Brisbane, Qld, Australia.

出版信息

Pigment Cell Melanoma Res. 2009 Oct;22(5):544-62. doi: 10.1111/j.1755-148X.2009.00606.x. Epub 2009 Jul 8.

Abstract

The presence of melanin pigment within the iris is responsible for the visual impression of human eye colouration with complex patterns also evident in this tissue, including Fuchs' crypts, nevi, Wolfflin nodules and contraction furrows. The genetic basis underlying the determination and inheritance of these traits has been the subject of debate and research from the very beginning of quantitative trait studies in humans. Although segregation of blue-brown eye colour has been described using a simple Mendelian dominant-recessive gene model this is too simplistic, and a new molecular genetic perspective is needed to fully understand the biological complexities of this process as a polygenic trait. Nevertheless, it has been estimated that 74% of the variance in human eye colour can be explained by one interval on chromosome 15 that contains the OCA2 gene. Fine mapping of this region has identified a single base change rs12913832 T/C within intron 86 of the upstream HERC2 locus that explains almost all of this association with blue-brown eye colour. A model is presented whereby this SNP, serving as a target site for the SWI/SNF family member HLTF, acts as part of a highly evolutionary conserved regulatory element required for OCA2 gene activation through chromatin remodelling. Major candidate genes possibly effecting iris patterns are also discussed, including MITF and PAX6.

摘要

虹膜中黑色素的存在决定了人眼的颜色视觉印象,该组织中还存在复杂的图案,包括富克斯隐窝、痣、沃尔夫林结节和收缩沟。从人类数量性状研究一开始,这些性状的决定和遗传的遗传基础就一直是争论和研究的主题。尽管使用简单的孟德尔显性-隐性基因模型描述了蓝褐色眼睛颜色的分离,但这过于简单化,需要新的分子遗传学视角来充分理解作为多基因性状的这一过程的生物学复杂性。然而,据估计,人类眼睛颜色74%的变异可以由15号染色体上包含OCA2基因的一个区间来解释。对该区域的精细定位已经确定了上游HERC2基因座第86内含子中的一个单碱基变化rs12913832 T/C,该变化几乎解释了与蓝褐色眼睛颜色的所有关联。本文提出了一个模型,其中这个单核苷酸多态性(SNP)作为SWI/SNF家族成员HLTF的靶位点,通过染色质重塑作为OCA2基因激活所需的高度进化保守调控元件的一部分发挥作用。还讨论了可能影响虹膜图案的主要候选基因,包括MITF和PAX6。

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