Population densities predict forebrain size variation in the cleaner fish Labroides dimidiatus.

Zegni Triki, Elena Levorato, William McNeely, Justin Marshall, Redouan Bshary
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Abstract

The 'social brain hypothesis' proposes a causal link between social complexity and either brain size or the size of key brain parts known to be involved in cognitive processing and decision-making. While previous work has focused on comparisons between species, how social complexity affects plasticity in brain morphology at the intraspecific level remains mostly unexplored. A suitable study model is the mutualist 'cleaner' fish Labroides dimidiatus, a species that removes ectoparasites from a variety of 'client' fishes in iterative social interactions. Here, we report a positive relationship between the local density of cleaners, as a proxy of both intra- and interspecific sociality, and the size of the cleaner's brain parts suggested to be associated with cognitive functions, such as the diencephalon and telencephalon (that together form the forebrain). In contrast, the size of the mesencephalon, rhombencephalon, and brain stem, assumed more basal in function, were independent of local fish densities. Selective enlargement of brain parts, that is mosaic brain adjustment, appears to be driven by population density in cleaner fish.

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种群密度可预测清洁鱼(Labroides dimidiatus)前脑大小的变化。
社会大脑假说 "提出,社会复杂性与大脑大小或已知参与认知处理和决策的大脑关键部分的大小之间存在因果关系。以往的研究主要集中在物种之间的比较,而社会复杂性如何影响大脑形态在种内水平的可塑性,大部分研究仍未涉及。互助型 "清洁工 "鱼 Labroides dimidiatus 是一个合适的研究模型,这种鱼在反复的社会互动中清除各种 "客户 "鱼的体外寄生虫。在这里,我们报告了作为种内和种间社会性代表的当地清洁鱼密度与清洁鱼大脑中被认为与认知功能相关的部分(如二脑和端脑(共同构成前脑))大小之间的正相关关系。与此相反,间脑、菱脑和脑干的大小则与当地的鱼类密度无关。大脑部位的选择性增大,即镶嵌式大脑调整,似乎是由清洁鱼的种群密度驱动的。
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