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A major effect QTL on chromosome 18 for noise injury to the mouse cochlear lateral wall.

机译:QTL对18号染色体的主要影响是对小鼠耳蜗侧壁的噪声损伤。

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We recently demonstrated a striking difference among inbred mouse strains in the effects of a single noise exposure, whereby CBA/J and CBA/CaJ (CBA) mice show moderate reversible reduction in the endocochlear potential (EP) while C57BL/6J (B6) mice do not (Ohlemiller, K.K., Gagnon, P.M., 2007. Genetic dependence of cochlear cells and structures injured by noise. Hear. Res. 224, 34-50). Acute EP reduction in CBA was reliably associated with characteristic pathology of the spiral ligament and stria vascularis, both immediately after noise and 8weeks later. Analysis of B6xCBA F1 hybrid mice indicated that EP reduction and its anatomic correlates are co-inherited in an autosomal dominant manner. Further analysis of N2 mice resulting from the backcross of F1 hybrids to B6 mice led us to suggest that the EP reduction phenotype principally reflects the influence of a small number of quantitative trait loci (QTLs). Here we report the results of QTL mapping of the EP reduction phenotype in CBA/J using 106 N2 mice from a (CBAxB6)xB6 backcross. Correlation of acute post-noise EP with 135 markers distributed throughout the genome revealed a single major effect QTL on chromosome 18 (12.5 cM, LOD 3.57) (Nirep, for noise-induced reduction in EP QTL), and two marginally significant QTLs on chromosomes 5 and 16 (LOD 1.43 and 1.73, respectively). Our results underscore that fact that different cochlear structures may possess different susceptibilities to noise through the influence of non-overlapping genes. While Nirep and similar-acting QTLs do not appear to influence the extent of permanent hearing loss from a single noise exposure, they could reduce the homeostatic 'reserve' of the lateral wall in protracted or continual exposures, and thereby influence long term threshold stability.
机译:我们最近证明了自交小鼠品系在一次噪声暴露中的影响之间存在显着差异,其中CBA / J和CBA / CaJ(CBA)小鼠显示出适度的可逆性内耳电位(EP)降低,而C57BL / 6J(B6)小鼠请勿这样做(Ohlemiller,KK,Gagnon,PM,2007年。耳蜗细胞和受噪音伤害的结构的遗传依赖性。Hear。Res。224,34-50)。 CBA的急性EP降低与噪声后立即和8周后的螺旋韧带和血管纹的特征性病理确实相关。对B6xCBA F1杂种小鼠的分析表明,EP减少及其解剖相关性以常染色体显性方式被共同继承。 F1杂种回交到B6小鼠后对N2小鼠的进一步分析导致我们建议,EP减少表型主要反映了少数数量性状基因座(QTL)的影响。在这里,我们报告了使用来自(CBAxB6)xB6回交的106 N2小鼠在CBA / J中EP还原表型的QTL定位结果。急性噪声后EP与分布在整个基因组中的135个标记的相关性揭示了对18号染色体的单个主要QTL(12.5 cM,LOD 3.57)(Nirep,用于噪声引起的EP QTL的降低),和两个在染色体上的边际显着QTL 5和16(LOD为1.43和1.73)。我们的结果强调了这样一个事实,即不同的耳蜗结构可能通过非重叠基因的影响而对噪声具有不同的敏感性。尽管Nirep和类似作用的QTL似乎不影响单次噪声暴露造成的永久性听力损失的程度,但它们可以减少长时间或连续暴露中侧壁的稳态“储备”,从而影响长期阈值稳定性。

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