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A New Group-Training Procedure for Habituation Demonstrates That Presynaptic Glutamate Release Contributes to Long-Term Memory in Caenorhabditis elegans

机译:一种新的适应性群体训练程序证明突触前谷氨酸的释放有助于秀丽隐杆线虫的长期记忆。

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摘要

In the experiments reported here we have developed a new group-training protocol for assessing long-term memory for habituation in Caenorhabditis elegans. We have replicated all of the major findings of the original single-worm protocol using the new protocol: (1) distributed training produced long-term retention of training, massed training did not; (2) distributed training at long interstimulus intervals (ISIs) produced long-term retention, short ISIs did not; and (3) long-term memory for distributed training is protein synthesis-dependent as it could be blocked by heat shock during the inter-block interval. In addition, we have shown that long-term memory for habituation is graded, depending on the number of blocks of stimuli in training. The inter-block interval must be >40 min for long-term retention of training to occur. Finally, we have tested long-term memory for habituation training in a strain of worms with a mutation in a vesicular glutamate transporter in the sensory neurons that transduce tap (eat-4). The results from these eat-4 worms indicate that glutamate release from the sensory neurons has an important role in the formation of long-term memory for habituation.
机译:在这里报道的实验中,我们开发了一种新的小组训练方案,用于评估秀丽隐杆线虫的长期记忆以适应其习惯。我们使用新协议复制了原始单蠕虫协议的所有主要发现:(1)分布式训练可长期保留训练,而大规模训练则没有; (2)在较长的刺激间隔(ISI)上进行分布式训练可产生长期保留,而短期ISI则没有。 (3)分布式训练的长期记忆是蛋白质合成依赖性的,因为在间隔间的间隔中它可能被热激所阻断。此外,我们已经证明习惯训练的长期记忆是分级的,具体取决于训练中刺激的块数。块之间的间隔必须大于40分钟,这样才能长期保留训练。最后,我们测试了长期记忆,用于在蠕虫品系中进行习惯性训练,这种蠕虫品系在转导轻敲(eat-4)的感觉神经元中的囊状谷氨酸转运蛋白发生了突变。这些eat-4蠕虫的结果表明,从感觉神经元释放谷氨酸在习惯形成的长期记忆中起着重要作用。

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