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首页> 外文期刊>Frontiers in Behavioral Neuroscience >Two Strains of Lymnaea stagnalis and the Progeny from Their Mating Display Differential Memory-Forming Ability on Associative Learning Tasks
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Two Strains of Lymnaea stagnalis and the Progeny from Their Mating Display Differential Memory-Forming Ability on Associative Learning Tasks

机译:两种 Lymnaea stagnalis 菌株及其后代在交配学习任务中表现出不同的记忆形成能力

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The pond snail Lymnaea stagnalis learns and forms long-term memory (LTM) following both operant conditioning of aerial respiratory behavior and classical conditioning of taste aversive behavior. In the present study, we examined whether there are interstrain differences in the ability to form LTM following these two types of conditioning. A strain of Lymnaea (TC1) collected in Alberta, Canada exhibits superior memory-forming ability following aerial respiratory operant conditioning compared to a laboratory-reared strain of Lymnaea from Netherlands known as the Dutch strain. We asked whether the offspring of the Canadian TC1 and Dutch snails (i.e., filial 1 (F_(1)) cross snails) would have the superior memory ability and found, rather, that their memory ability was average like the Dutch snails. That is, the Canadian TC1 snails have superior ability for LTM formation following aerial respiratory operant conditioning, but the Dutch and the generated F_(1)cross have average ability for memory forming. We next examined the Canadian TC1, Dutch and F_(1)cross snails for their ability to learn and form memory following conditioned taste aversion (CTA). All three populations showed similar associative CTA responses. However, both LTM formation and the ratio of good-to-poor performers in the memory retention test were much better in the Dutch snails than the Canadian TC1 and F_(1)cross snails. The memory abilities of the Canadian TC1 and F_(1)cross snails were average. Our present findings, therefore, suggest that snails of different strains have different memory abilities, and the F_(1)cross snails do not inherit the memory ability from the smart strain. To our knowledge, there have been a limited number of studies examining differences in memory ability among invertebrate strains, with the exception of studies using mutant flies.
机译:池塘蜗牛Lymnaea stagnalis在进行空中呼吸行为的操作性调节和厌恶味行为的经典调节之后,学习并形成长期记忆(LTM)。在本研究中,我们检查了在这两种条件下形成LTM的能力之间是否存在菌株间差异。与实验室饲养的来自荷兰的Lymnaea菌株(称为荷兰菌株)相比,在加拿大艾伯塔省采集的Lymnaea菌株(TC1)在进行空中呼吸操作后表现出优异的记忆形成能力。我们询问加拿大TC1和荷兰蜗牛(即孝子1(F_(1))交叉蜗牛)的后代是否具有更好的记忆能力,并发现它们的记忆能力像荷兰蜗牛一样平均。也就是说,加拿大TC1蜗牛在进行空中呼吸操作后,具有形成LTM的优异能力,但荷兰人和生成的F_(1)杂交具有形成记忆的平均能力。接下来,我们研究了加拿大TC1,荷兰和F_(1)杂交蜗牛在条件性味觉厌恶(CTA)后学习和形成记忆的能力。这三个人群均显示出相似的联合CTA反应。但是,在荷兰语蜗牛中,LTM的形成和记忆保留测试中良好与差者的比率都比加拿大的TC1和F_(1)十字蜗牛好得多。加拿大TC1和F_(1)跨蜗牛的记忆能力是平均水平。因此,我们目前的发现表明,不同菌株的蜗牛具有不同的记忆能力,而F_(1)交叉蜗牛不能从智能菌株继承记忆能力。据我们所知,除了使用突变果蝇的研究外,很少有研究检查无脊椎动物品系的记忆能力差异。

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