食習慣で鱗食魚の顎が左右非対称になることを実証~右利き・左利きの形成メカニズムの解明に期待~

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2025-07-07 北海道大学,福井県立大学

アフリカ・タンガニイカ湖に生息する鱗食魚「Perissodus microlepis」の下顎の左右非対称性が、摂食経験によって顕著化することを実証。研究チームは、鱗を食べる経験を与えた個体と人工餌を与えた個体を比較し、鱗食が捕食行動を活発化させ、下顎骨の非対称性を増大させることを明らかにした。これは利き手のような「利き」が、遺伝的要因に加え、行動経験によって形成されることを示唆している。顎の可塑的変化と利きの維持機構の解明に貢献する成果。

食習慣で鱗食魚の顎が左右非対称になることを実証~右利き・左利きの形成メカニズムの解明に期待~
図 1. 研究成果の概略図(右利きの場合)

<関連情報>

表現型可塑性によって促進される鱗食性シクリッドの利き Phenotypic plasticity drives the development of laterality in the scale-eating cichlid fish Perissodus microlepis

Nanako Marubayashi , Masaki Yasugi , Yuichi Takeuchi
Evolution  Published:04 July 2025
DOI:https://doi.org/10.1093/evolut/qpaf131

Abstract

Phenotypic plasticity, in which traits change in response to environmental conditions, is closely related to predator–prey interactions and speciation. The scale-eating cichlid fish Perissodus microlepis exhibits marked left–right differences in predatory behavior and mouth morphology. While phenotypic plasticity is hypothesized to contribute to the formation of laterality, direct evidence remains scarce. We examined how plasticity shapes laterality by analyzing the predatory behavior and mandibular changes under different foraging conditions: picking granulated feed (non-scale-eating) and tearing scales from prey fish. During the predation experiment, the number of attacks increased over time. Behavioral analysis revealed the mean inter-individual distance from scale-eater to prey gradually decreased, whereas mean swimming activity increased. Morphological analysis of the mandible showed elongation of the dentary bone along the anterior–posterior axis in the scale-eating groups compared to the non-scale-eating group. Furthermore, mandible height was significantly greater on the dominant side, with the degree of asymmetry increasing with scale-eating experience. This strongly suggests that phenotypic plasticity contributes to the enhancement of laterality and promotes disruptive selection of lateral morphs. This study advances our understanding of the unique adaptation in P. microlepis and highlights the importance of feeding experience in shaping adaptive traits within the cichlid lineage.

生物環境工学
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