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果蝇突变体在电击后气味回避能力下降会影响学习和记忆测试结果。

Decreased odor avoidance after electric shock in Drosophila mutants biases learning and memory tests.

作者信息

Préat T

机构信息

Institut Alfred Fessard, Centre National de la Recherche Scientifique, 91190 Gif-sur-Yvette, France.

出版信息

J Neurosci. 1998 Oct 15;18(20):8534-8. doi: 10.1523/JNEUROSCI.18-20-08534.1998.

Abstract

The Drosophila mutants amnesiac, dunce (dnc), and rutabaga were isolated after associative conditioning tests, during which animals were trained to associate the presence of an odor with that of electric shocks (ES). In the absence of conditioning, the odor avoidance (OA) of these mutants was shown to be normal, indicating that their poor associative conditioning performance was attributable to specific learning or memory deficits. However, I show that the OA of the mutants is greatly decreased after their exposure to ES. This effect can last for hours. These results strongly suggest that part of the defect displayed by these mutants in associative conditioning tests does not correspond to a learning or memory deficit but might arise from abnormal sensitivity to stressful stimuli. I looked at the OA after ES of two previously characterized dnc mutants. Df(1)N79f specifically decreases Dnc expression in the mushroom bodies, leading to a normal level of learning but decreased memory. Df(1)N79f mutants displayed a normal OA after ES. Df(1)N64j15 affects the entire brain expression of Dnc, leading to decreased learning and memory. Df(1)N64j15 animals showed a strong decrease of their OA after ES. Thus, the lack of Dnc "general" expression is most likely responsible for the OA defect, which would be responsible for the apparent learning defect after conditioning. In contrast, the Dnc phosphodiesterase accumulated in the mushroom bodies would be involved specifically in memory formation.

摘要

果蝇突变体失忆症(amnesiac)、笨蛋(dunce,dnc)和大头菜(rutabaga)是在联想性条件反射测试后分离出来的,在此测试过程中,动物被训练将一种气味的出现与电击(ES)联系起来。在没有条件反射的情况下,这些突变体的气味回避(OA)表现正常,这表明它们联想性条件反射表现不佳是由于特定的学习或记忆缺陷。然而,我发现这些突变体在受到电击后,其气味回避能力大幅下降。这种影响可持续数小时。这些结果强烈表明,这些突变体在联想性条件反射测试中表现出的部分缺陷并非对应于学习或记忆缺陷,而是可能源于对压力刺激的异常敏感。我观察了两个先前已表征的dnc突变体在电击后的气味回避情况。Df(1)N79f特异性地降低了蘑菇体中Dnc的表达,导致正常水平的学习但记忆下降。Df(1)N79f突变体在电击后表现出正常的气味回避。Df(1)N64j15影响Dnc在整个大脑中的表达,导致学习和记忆下降。Df(1)N64j15动物在电击后其气味回避能力大幅下降。因此,Dnc“普遍”表达的缺失很可能是气味回避缺陷的原因,而这可能是条件反射后明显学习缺陷的原因。相比之下,在蘑菇体中积累的Dnc磷酸二酯酶可能专门参与记忆形成。

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