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Circadian modulation of learning ability in a disease vector insect, Rhodnius prolixus

机译:疾病媒介昆虫Rhodnius prolixus学习能力的昼夜节律调节

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摘要

Despite the drastic consequences it may have on the transmission of parasites, the ability of disease vectors to learn and retain information has just begun to be characterised. The kissing bug Rhodnius prolixus, a vector of Chagas disease, is an excellent model, particularly because conditioning the proboscis extension response (PER) constitutes a valuable paradigm to study their cognitive abilities under carefully controlled conditions. Another characteristic of these bugs is the temporal organisation of their different activities in a bimodal endogenous daily rhythm. This offers the opportunity to address the implication of the circadian system in learning and memory. Using aversive conditioning of the PER, we tested whether the ability of kissing bugs to learn and remember information varies during the day. We found that bugs perform well during the night, but not during the day: their ability to acquire information - but not their ability to retrieve it - is modulated by time. When the bugs were kept under constant conditions in order to analyse the origin of this rhythm, the rhythm continued to free run, showing its endogenous and truly circadian nature. These results are the first to evince the effect of the circadian system on the learning abilities of disease vectors and one of the few in insects in general.
机译:尽管它可能对寄生虫的传播产生巨大影响,但疾病媒介物学习和保留信息的能力才刚刚开始表征。恰加斯病的一种媒介,接吻小虫Rhodnius prolixus是一个很好的模型,特别是因为调节长鼻延长反应(PER)构成了在精心控制的条件下研究其认知能力的宝贵范例。这些虫子的另一个特征是它们在双峰内源性日常节律中不同活动的时间组织。这提供了解决昼夜节律系统对学习和记忆的影响的机会。使用PER的反感条件,我们测试了亲吻小虫学习和记忆信息的能力在一天中是否发生变化。我们发现错误在晚上表现良好,但在白天却表现不佳:它们获取信息的能力(而不是其获取信息的能力)受时间影响。当将虫子保持在恒定的条件下以分析这种节奏的起源时,节奏继续自由奔跑,显示出其内生和真正的昼夜节律性。这些结果是第一个证明昼夜节律系统对疾病载体学习能力的影响的方法,也是昆虫中少数为数众多的动物之一。

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