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小鼠长期快速生长率选择的直接和相关反应的基因组图谱。

Genomic mapping of direct and correlated responses to long-term selection for rapid growth rate in mice.

作者信息

Allan Mark F, Eisen Eugene J, Pomp Daniel

机构信息

Department of Animal Science, University of Nebraska, Lincoln, Nebraska 68583, USA.

出版信息

Genetics. 2005 Aug;170(4):1863-77. doi: 10.1534/genetics.105.041319. Epub 2005 Jun 8.

Abstract

Understanding the genetic architecture of traits such as growth, body composition, and energy balance has become a primary focus for biomedical and agricultural research. The objective of this study was to map QTL in a large F(2) (n = 1181) population resulting from an intercross between the M16 and ICR lines of mice. The M16 line, developed by long-term selection for 3- to 6-week weight gain, is larger, heavier, fatter, hyperphagic, and diabetic relative to its randomly selected control line of ICR origin. The F(2) population was phenotyped for growth and energy intake at weekly intervals from 4 to 8 weeks of age and for body composition and plasma levels of insulin, leptin, TNFalpha, IL6, and glucose at 8 weeks and was genotyped for 80 microsatellite markers. Since the F(2) was a cross between a selection line and its unselected control, the QTL identified likely represent genes that contributed to direct and correlated responses to long-term selection for rapid growth rate. Across all traits measured, 95 QTL were identified, likely representing 19 unique regions on 13 chromosomes. Four chromosomes (2, 6, 11, and 17) harbored loci contributing disproportionately to selection response. Several QTL demonstrating differential regulation of regional adipose deposition and age-dependent regulation of growth and energy consumption were identified.

摘要

了解生长、身体组成和能量平衡等性状的遗传结构已成为生物医学和农业研究的主要焦点。本研究的目的是在由M16和ICR品系小鼠杂交产生的大型F2(n = 1181)群体中定位数量性状基因座(QTL)。M16品系是通过对3至6周龄体重增加进行长期选择培育而成的,相对于其ICR起源的随机选择对照品系,它体型更大、更重、更胖、食欲亢进且患有糖尿病。对F2群体在4至8周龄期间每周进行生长和能量摄入表型分析,并在8周时进行身体组成以及胰岛素、瘦素、肿瘤坏死因子α、白细胞介素6和葡萄糖的血浆水平分析,同时对80个微卫星标记进行基因分型。由于F2是选择品系与其未选择的对照之间的杂交后代,所鉴定出的QTL可能代表了对长期选择快速生长率产生直接和相关反应的基因。在所有测量的性状中,共鉴定出95个QTL,可能代表13条染色体上的19个独特区域。四条染色体(2、6、11和17)含有对选择反应贡献不成比例的基因座。还鉴定出了几个显示区域脂肪沉积差异调节以及生长和能量消耗年龄依赖性调节的QTL。

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