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Arginine vasotocin modulates associative learning in a mutualistic cleaner fish

机译:精氨酸血管收缩素调节相互清洁鱼中的联想学习

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摘要

Social environmental complexity induces structural and biochemical changes in animals’ brains, which are linked to the improvement of animals’ learning abilities. The nonapeptides from the arginine vasopressin (AVP) family (arginine vasotocin, AVT, in non-mammals) play a significant role in the regulation of social behavior, particularly in the formation of social memories and individual recognition. Moreover, the role of AVT in the regulation of interspecific interactions has only recently started to be addressed in the context of cleaner fish mutualisms and learning. Variance in the distribution of AVP receptor expression, which is linked to distinct neural systems (related to the dorsolateral and the dorsomedial telencephalon), is known to be implicated in differences in individual learning processes. Here we asked if the associative learning performance of the Indo-Pacific bluestreak cleaner wrasse (Labroides dimidiatus) is regulated by AVT. We tested the influence of AVT upon the cleaners’ ability to solve two different problems (cue and place discrimination tasks) that in principle differ in ecological relevance and are associated with two different memory systems. We found that AVT affected the learning competence of cleaners differently between tasks, as individual performance showed distinct response selectivity to AVT dosage levels. However, only in the ecologically relevant task was their learning response improved by blocking AVT via treatment with the antagonist Manning compound. Our findings demonstrate that AVT pathways, which are implicated in the regulation of interspecific behavior (i.e., a cleaner’s willingness to seek interactions with clients), are also linked to individual learning ability in the context of mutualistic behavior, and in tune with socio-ecological demands.
机译:社会环境的复杂性导致动物大脑的结构和生化变化,这与动物学习能力的提高有关。精氨酸加压素(AVP)家族的九肽(非哺乳动物中的精氨酸加压素,AVT)在社会行为的调节中起着重要作用,特别是在形成社会记忆和个人认可方面。而且,AVT在种间相互作用调节中的作用直到最近才开始在清洁鱼的共生和学习中得到解决。已知AVP受体表达的分布差异与不同的神经系统(与背外侧和背侧端脑)有关,与个体学习过程的差异有关。在这里,我们询问印度洋-太平洋蓝条纹清洁濑鱼(Labroides dimidiatus)的联想学习性能是否受AVT的调节。我们测试了AVT对清洁工解决两个不同问题(提示和位置区分任务)的能力的影响,这些问题在原则上在生态意义上是不同的,并且与两个不同的内存系统相关。我们发现,AVT对任务之间清洁工的学习能力的影响不同,因为个人表现对AVT剂量水平显示出不同的响应选择性。然而,仅在与生态相关的任务中,通过用拮抗剂曼宁化合物治疗阻断AVT才能改善他们的学习反应。我们的发现表明,AVT途径与种间行为的调节(即清洁者寻求与客户互动的意愿)有关,在相互主义行为的背景下,也与个人学习能力相关联,并且与社会生态学相呼应。需要。

著录项

  • 来源
    《Behavioral Ecology and Sociobiology》 |2015年第7期|1173-1181|共9页
  • 作者单位

    Unidade de Investigação em Eco-Etologia ISPA – Instituto Universitário">(1);

    CIBIO Centro de Investigação em Biodiversidade e Recursos Genéticos Universidade do Porto">(2);

    Eco-Ethologie Institut de Biologie Université de Neuchâtel">(3);

    CIBIO Centro de Investigação em Biodiversidade e Recursos Genéticos Universidade do Porto">(2);

    Eco-Ethologie Institut de Biologie Université de Neuchâtel">(3);

    Unidade de Investigação em Eco-Etologia ISPA – Instituto Universitário">(1);

    Unidade de Investigação em Eco-Etologia ISPA – Instituto Universitário">(1);

    Integrative Behavioural Biology Group Instituto Gulbenkian de Ciência">(4);

    Champalimaud Neuroscience Programme Champalimaud Foundation">(5);

    CIBIO Centro de Investigação em Biodiversidade e Recursos Genéticos Universidade do Porto">(2);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cleaner fish; Learning abilities; Labroides dimidiatus; Neuropeptides; Arginine vasotocin; Socio-ecological demands;

    机译:清洁鱼;学习能力;拟南芥神经肽精氨酸血管紧张素;社会生态需求;

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