Hendley E D, Atwater D G, Myers M M, Whitehorn D
Hypertension. 1983 Mar-Apr;5(2):211-7. doi: 10.1161/01.hyp.5.2.211.
The Wistar Kyoto strain of spontaneously hypertensive rat (SHR) has been characterized as behaviorally hyperactive as well as hypertensive. The relationship between these two inbred traits remains uncertain, and their coexistence in the SHR has complicated studies of central nervous system mechanisms underlying the hypertensive process. A breeding program was initiated to examine the possible genetic linkage of these two traits which, if separable, would allow us to develop substrains of SHR that are hypertensive without being hyperactive, or hyperactive without being hypertensive. We crossed SHR males with Wistar Kyoto, normotensive (WKY) female rats and produced F1 hybrids which were then randomly inbred to produce an F2 population. When tested at 12 weeks of age, F2 rats exhibited the expected wide range of mean systolic blood pressures (BP), from 111 to 174 mm Hg, as determined using indirect tail plethysmography. The BP in the parental rats at the time of breeding (16 weeks) was 187 +/- 4.5 mm Hg (SHR males, n = 7) and 111 +/- 2.4 (WKY females, n = 7). Locomotor activity was determined in an automated activity cage in F1 and F2 rats at 12 weeks of age. These strains exhibited a wide range of phenotypic distribution of locomotor activity scores, and the mean scores were intermediary between those of SHR rats and WKY rats of the same age. Among individual rats of both the F1 and F2 hybrid strains, there was no correlation between the activity score and the level of the BP at 12 weeks of age. These findings indicated that the genes responsible for the hypertensive trait and those responsible for the hyperactivity trait were not tightly linked in the hybrid populations, suggesting that different genetic factors were involved in the transmission of each of these traits. Accordingly, it should be possible to separate the two traits by further selective, recombinant inbreeding procedures.
自发性高血压大鼠(SHR)的Wistar Kyoto品系具有行为多动以及高血压的特征。这两个近交性状之间的关系仍不确定,它们在SHR中的共存使得对高血压过程潜在的中枢神经系统机制的研究变得复杂。启动了一项育种计划,以研究这两个性状可能的遗传连锁,如果它们是可分离的,将使我们能够培育出不伴有多动的高血压SHR亚系,或不伴有高血压的多动SHR亚系。我们将SHR雄性大鼠与血压正常的Wistar Kyoto(WKY)雌性大鼠杂交,产生F1杂种,然后将其随机近交以产生F2群体。在12周龄时进行测试时,使用间接尾容积描记法测定,F2大鼠表现出预期的广泛平均收缩压(BP)范围,从111至174 mmHg。育种时(16周)亲代大鼠的血压为187±4.5 mmHg(SHR雄性,n = 7)和111±2.4(WKY雌性,n = 7)。在12周龄时,在自动活动笼中测定F1和F2大鼠的运动活动。这些品系表现出运动活动评分的广泛表型分布,平均评分介于同龄SHR大鼠和WKY大鼠之间。在F1和F2杂交品系的个体大鼠中,12周龄时的活动评分与血压水平之间没有相关性。这些发现表明,在杂交群体中,负责高血压性状的基因和负责多动性状的基因没有紧密连锁,这表明不同的遗传因素参与了这些性状各自的传递。因此,通过进一步的选择性重组近交程序应该有可能分离这两个性状。