Mildly impaired water maze performance in male Fmr1 knockout mice

被引:158
作者
DHooge, R
Nagels, G
Franck, F
Bakker, CE
Reyniers, E
Storm, K
Kooy, RF
Oostra, BA
Willems, PJ
DeDeyn, PP
机构
[1] ERASMUS UNIV ROTTERDAM,DEPT CLIN GENET,NL-3000 DR ROTTERDAM,NETHERLANDS
[2] UNIV ANTWERP,DEPT MED GENET,B-2020 ANTWERP,BELGIUM
[3] UNIV ANTWERP,MIDDLESBROUGH GEN HOSP,NEUROL MEMORY CLIN,B-2020 ANTWERP,BELGIUM
关键词
fragile X syndrome; mental retardation; Morris water maze; spatial learning; transgenic mice;
D O I
10.1016/S0306-4522(96)00224-2
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Fmr1 knockout mice constitute a putative model of fragile X syndrome, the most common form of heritable mental disability in humans. We have compared the performance of transgenic mice with an Fmr1 knockout with that of normal littermates in hidden- and visible-platform water maze learning, and showed that knockouts exhibit subnormal spatial learning abilities and marginal motor performance deficits. During 12 training trials of the hidden-platform task, escape latency and path length decreased significantly in knockouts and control littermates, and no effect of genotype was found. During four ensuing reversal trials, however, significant differences were found between knockouts and control littermates both in escape latency and path length. During the visible-platform condition, the reversal trials also revealed a difference between knockouts and normal littermates in escape latency, but not in path length. Possibly due to marginal motor incapacity, knockouts swam significantly slower than controls during these latter trials. During both probe trials of the hidden-platform task, knockouts as well as normal littermates spent more time in the target quadrant than in the otter quadrants, and percent of time spent in the target quadrant was the same in both groups; swimming velocity was not significantly different between knockouts and normal littermates during these trials. Entries in the target area during the probe trials did show a significant effect of genotype on number of entries. The present results largely confirm and extend our previous findings. Impaired spatial abilities in Fmr1 knockouts might have been due to relatively low response flexibility or high memory interference in Fmr1 knockouts. It remains unclear, however, which brain region or neurochemical system might be involved in these disabilities. We conclude that Fmr1 knockout mice might be a valid model of fragile X mental retardation. Copyright (C) 1996 IBRO.
引用
收藏
页码:367 / 376
页数:10
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