首页> 外文期刊>Mammalian genome: official journal of the International Mammalian Genome Society >Fine mapping dissects pleiotropic growth quantitative trait locus into linked loci.
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Fine mapping dissects pleiotropic growth quantitative trait locus into linked loci.

机译:精细作图将多效性生长定量性状基因座分解为链接的基因座。

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摘要

A recurring issue in studies of quantitative trait loci (QTLs) is whether QTLs that appear to have pleiotropic effects are indeed caused by pleiotropy at single loci or by linked QTLs. Previous work identified a QTL that affected tail length in mice and the lengths of various bones, including the humerus, ulna, femur, tibia, and mandible. The effect of this QTL on tail length has since been found to be due to multiple linked QTLs and so its apparently pleiotropic effects may have been due to linked QTLs with distinct effects. In the present study we examined a line of mice segregating only for a 0.94-Mb chromosomal region known to contain a subset of the QTLs influencing tail length. We measured a number of skeletal dimensions, including the lengths of the skull, mandible, humerus, ulna, femur, tibia, calcaneus, metatarsus, and a tail bone. The QTL region was found to have effects on the size of the mandible and length of the tail bone, with little or no effect on the other traits. Using a randomization approach, we rejected the null hypothesis that the QTL affected all traits equally, thereby demonstrating that the pleiotropic effects reported earlier were due to linked loci with distinct effects. This result underlines the possibility that seemingly pleiotropic effects of QTLs may frequently be due to linked loci and that high-resolution mapping will often be required to distinguish between pleiotropy and linkage.
机译:数量性状基因座(QTL)研究中的一个反复出现的问题是,看起来具有多效性效应的QTL是否确实是由单个基因座的多效性或连锁QTL引起的。先前的工作确定了一个QTL,它影响小鼠的尾巴长度以及包括肱骨,尺骨,股骨,胫骨和下颌骨在内的各种骨骼的长度。此后,已经发现该QTL对尾巴长度的影响是由于多个连锁的QTL所致,因此其明显的多效性效应可能是由于连锁的QTL具有明显的效果。在本研究中,我们检查了仅分离0.94 Mb染色体区域的小鼠系,已知该区域包含影响尾巴长度的QTL的子集。我们测量了许多骨骼尺寸,包括头骨,下颌骨,肱骨,尺骨,股骨,胫骨,跟骨,meta骨和尾骨的长度。发现QTL区域对下颌骨的大小和尾骨的长度有影响,而对其他特征几乎没有影响。使用随机化方法,我们拒绝了QTL对所有性状均等影响的零假设,从而证明了先前报道的多效性效应是由连锁基因位点引起的。该结果强调了QTL的表面活性可能经常是由于连锁基因座引起的,并且通常需要高分辨率映射来区分多效性和连锁性。

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