首页> 外文期刊>Journal of Comparative Physiology, B. Biochemical, Systemic, and Environmental Physiology >Partial phenotype conversion and differential trait response to conditions of husbandry in mice
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Partial phenotype conversion and differential trait response to conditions of husbandry in mice

机译:局部表型转化与小鼠饲养条件的差异特征反应

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Functional genome analysis usually is performed on the level of genotype-phenotype interaction. However, phenotypes also depend on the relations between genomes and environment. In our experimental system, we observed differential response to environmental factors defined by different conditions of husbandry in a semi-barrier unit or in a SPF (specific pathogen free) barrier unit, which resulted in partial reversal of phenotypes previously observed under semi-barrier conditions. To provide an update of basic phenotypes in unselected and randomly mated controls (DUC) and long-term selected DUhTP (Dummerstorf high treadmill performance) mice in the SPF facility, we compared growth parameters, reproductive performance, the accretion of muscle and fat mass, physical activity, and running performance as well as food intake in all experimental groups. For selected parameters, the comparative analysis spans more than 30 generations. In DUC mice, under SPF conditions a more than threefold (P & 0.0001) higher subcutaneous fat mass, higher muscle mass by about 25% (P & 0.0001), but lower epididymal fat mass in DUhTP mice by about 20% (P & 0.0001) were observed. In SPF husbandry, body weight increased to a stronger extent in adult DUC mice (ae 20%; P & 0.0001) than in DUhTP mice (ae 8%; P = 0.001). The concentrations of IGF-1 and IGFBPs in the serum as well as the liver weights were similar in all experimental groups, indicating growth effects independent of the somatotropic axis. Under SPF conditions the litter size at birth increased in DUC mice (P & 0.001) but not in DUhTP mice. The differential effect of husbandry on body weights at day 21 and concentrations of triglycerides in the serum of our model were due to the different diets used in the semi-barrier and in the SPF facility. Our results demonstrate differential trait response to environmental factors resulting in partial phenotype conversion in our experimental system. The existence of conditional phenotypes as a result of genotype-environment interactions points to the importance of environmental factors in functional genome analysis.
机译:功能基因组分析通常在基因型 - 表型相互作用的水平上进行。然而,表型还取决于基因组和环境之间的关系。在我们的实验系统中,我们观察到对半屏障单元或SPF(特定病原体自由)屏障单元中不同饲养条件定义的环境因素的差异反应,这导致在半屏障条件下先前观察到的表型逆转。为了在SPF设施中提供未选择和随机交配的控制(DUC)和长期选定的DUHTP(DUCerstorf高跑步机性能)小鼠的基本表型的更新,我们比较了增长参数,生殖性能,肌肉和脂肪量的增生,所有实验组中的身体活动,以及运行性能以及食物摄入量。对于所选参数,比较分析跨越30多代。在DUC小鼠中,在SPF条件下,超过三倍(p& 0.0001)较高的皮下脂肪质量,较高的肌肉质量约为25%(P& 0.0001),但通过约杜氏小鼠的附睾脂肪块较低观察到20%(P& LT; 0.0001)。在SPF饲养中,体重增加成年人DUC小鼠(AE 20%; P& LT; 0.0001)的程度越来越大于DUHTP小鼠(AE 8%; P = 0.001)。所有实验组中,血清中IGF-1和IgFbps的浓度以及肝脏重量相似,表明无关的生长效果与躯体轴无关。在SPF条件下,DUC小鼠出生时的凋落物尺寸增加(P& 0.001),但不在DUHTP小鼠中增加。饲养对第21天体重的差异效果及我们模型血清血清浓度的浓度是由于半屏障和SPF设施中使用的不同饮食。我们的结果表明,对我们的实验系统中导致部分表型转化导致的环境因素的差异性状。基因型环境相互作用导致条件表型的存在指向功能基因组分析中环境因素的重要性。

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