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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >FOOD ODOR, VISUAL DANGER STIMULUS, AND RETRIEVAL OF AN AVERSIVE MEMORY TRIGGER HEAT SHOCK PROTEIN HSP70 EXPRESSION IN THE OLFACTORY LOBE OF THE CRAB CHASMAGNATHUS GRANULATUS
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FOOD ODOR, VISUAL DANGER STIMULUS, AND RETRIEVAL OF AN AVERSIVE MEMORY TRIGGER HEAT SHOCK PROTEIN HSP70 EXPRESSION IN THE OLFACTORY LOBE OF THE CRAB CHASMAGNATHUS GRANULATUS

机译:食物气味,视觉危险刺激和检索厌恶记忆触发热休克蛋白HSP70在蟹Chasmagnathus Granulatus的嗅觉叶中表达

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Although some of the neuronal substrates that support memory process have been shown in optic ganglia, the brain areas activated by memory process are still unknown in crustaceans. Heat shock proteins (HSPs) are synthesized in the CMS not only in response to traumas but also after changes in metabolic activity triggered by the processing of different types of sensory information. Indeed, the expression of citosolic/nuclear forms of HSP70 (HSC/HSP70) has been repeatedly used as a marker for increases in neural metabolic activity in several processes, including psycho-physiological stress, fear conditioning, and spatial learning in vertebrates. Previously, we have shown that, in the crab Chasmagnathus, two different environmental challenges, water deprivation and heat shock, trigger a rise in the number of glomeruli of the olfactory lobes (OLs) expressing HSC/ HSP70. in this study, we initially performed a morphometric analysis and identified a total of 154 glomeruli in each OL of Chasmagnathus. Here, we found that crabs exposed to food odor stimuli also showed a significant rise in the number of olfactory glomeruli expressing HSC/HSP70. In the crab Chasmagnathus, a powerful memory paradigm based on a change in its defensive strategy against a visual danger stimulus (VDS) has been extensively studied. Remarkably, the iterative presentation of a VDS caused an increase as well. This increase was triggered in animals visually stimulated using protocols that either build up a long-term memory or generate only short-term habituation. Besides, memory reactivation was sufficient to trigger the increase in HSC/HSP70 expression in the OL. Present and previous results strongly suggest that, directly or indirectly, an increase in arousal is a sufficient condition to bring about an increase in HSC/HSP70 expression in the OL of Chasmagnathus.
机译:尽管在光神经节中示出了支持存储器过程的一些神经元基材,但是通过记忆过程激活的脑区域在甲壳类动物中仍然未知。在CMS中不仅响应于创伤而且在由不同类型的感官信息的处理引发的代谢活动变化之后,而且还在CMS中合成热休克蛋白(HSP)。实际上,HSP70(HSC / HSP70)的柠檬酸/核形式的表达已被反复用作若干过程中神经代谢活性的标志物,包括心理生理压力,脊椎动物中的恐惧调理和空间学习。以前,我们已经表明,在螃蟹Chasmagnathus,两个不同的环境挑战,水剥夺和热休克,引发嗅叶(OLS)的肾小球数量的升高,表达HSC / HSP70。在这项研究中,我们最初进行了形态学分析,并在Chasmagnathus的每个OL中鉴定了总共154粒肾小球。在这里,我们发现暴露于食物气味刺激的螃蟹也表现出表达HSC / Hsp70的嗅觉肾小球数量的显着升高。在螃蟹Chasmagnathus中,已经广泛研究了基于其防御策略(VDS)的防御策略变化的强大内存范式。值得注意的是,VDS的迭代呈现也导致增加。使用协议的动物在视觉上刺激的动物中触发这种增加,这些方案要么仅占用长期记忆,或者仅产生短期习惯。此外,记忆重新激活足以触发OL中HSC / HSP70表达的增加。目前和以前的结果强烈建议,直接或间接地,唤醒的增加是一种充分的条件,以引起曲米菌病的OL中的HSC / HSP70表达增加。

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