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小鼠阴茎骨大小和形状变异的遗传基础。

The Genetic Basis of Baculum Size and Shape Variation in Mice.

作者信息

Schultz Nicholas G, Ingels Jesse, Hillhouse Andrew, Wardwell Keegan, Chang Peter L, Cheverud James M, Lutz Cathleen, Lu Lu, Williams Robert W, Dean Matthew D

机构信息

Molecular and Computational Biology, Department of Biological Sciences, University of Southern California, Los Angeles, California 90089.

University of Tennessee, Health Science Center, Memphis, Tennessee 38163.

出版信息

G3 (Bethesda). 2016 May 3;6(5):1141-51. doi: 10.1534/g3.116.027888.

Abstract

The rapid divergence of male genitalia is a preeminent evolutionary pattern. This rapid divergence is especially striking in the baculum, a bone that occurs in the penis of many mammalian species. Closely related species often display diverse baculum morphology where no other morphological differences can be discerned. While this fundamental pattern of evolution has been appreciated at the level of gross morphology, nearly nothing is known about the genetic basis of size and shape divergence. Quantifying the genetic basis of baculum size and shape variation has been difficult because these structures generally lack obvious landmarks, so comparing them in three dimensions is not straightforward. Here, we develop a novel morphometric approach to quantify size and shape variation from three-dimensional micro-CT scans taken from 369 bacula, representing 75 distinct strains of the BXD family of mice. We identify two quantitative trait loci (QTL) that explain ∼50% of the variance in baculum size, and a third QTL that explains more than 20% of the variance in shape. Together, our study demonstrates that baculum morphology may diverge relatively easily, with mutations at a few loci of large effect that independently modulate size and shape. Based on a combination of bioinformatic investigations and new data on RNA expression, we prioritized these QTL to 16 candidate genes, which have hypothesized roles in bone morphogenesis and may enable future genetic manipulation of baculum morphology.

摘要

雄性生殖器的快速分化是一种显著的进化模式。这种快速分化在阴茎骨中尤为明显,阴茎骨存在于许多哺乳动物物种的阴茎中。亲缘关系密切的物种通常呈现出多样的阴茎骨形态,而在其他形态特征上却没有明显差异。虽然这种基本的进化模式在宏观形态学层面已为人所知,但对于其大小和形状差异的遗传基础却几乎一无所知。量化阴茎骨大小和形状变异的遗传基础一直很困难,因为这些结构通常缺乏明显的标志性特征,所以在三维空间中对它们进行比较并非易事。在此,我们开发了一种新颖的形态测量方法,用于从369块阴茎骨的三维显微CT扫描中量化大小和形状变异,这些阴茎骨代表了BXD家族小鼠的75个不同品系。我们鉴定出两个数量性状基因座(QTL),它们解释了阴茎骨大小约50%的变异,还有第三个QTL解释了形状变异的20%以上。总之,我们的研究表明,阴茎骨形态可能相对容易发生分化,少数几个具有较大效应的基因座发生突变,可独立调节大小和形状。基于生物信息学研究和RNA表达新数据的综合分析,我们将这些QTL优先定位到16个候选基因,这些基因在骨形态发生中具有假定作用,可能有助于未来对阴茎骨形态进行基因操作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da4a/4856068/fc8d0531d6f7/1141f1.jpg

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