河川のイトヨは栄養が豊富なときに内臓脂肪をためやすい?―海型と河川型の餌への応答を比較―

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2026-10-06 国立遺伝学研究所

国立遺伝学研究所の研究グループは、北海道の海型イトヨと岐阜県の河川型イトヨ(ハリヨ)を、栄養の乏しい餌と栄養豊富な餌で飼育し、成長、内臓脂肪、全身の脂質組成を比較した。栄養豊富な餌は両タイプの成長を促進したが、河川型では内臓脂肪が一貫して増加したのに対し、海型では家系によって反応が異なった。一方、リピドーム解析では、栄養豊富な餌によって細胞膜リン脂質に含まれるDHAの割合が増加し、この応答は両タイプで概ね共通していた。この結果から、海型と河川型の進化的分化は、脂質代謝経路全体の大きな変化よりも、余剰エネルギーを内臓脂肪として蓄える戦略の違いに現れている可能性が示された。異なる栄養環境への適応とエネルギー貯蔵戦略の進化を理解する手掛かりとなる。

河川のイトヨは栄養が豊富なときに内臓脂肪をためやすい?―海型と河川型の餌への応答を比較―
岐阜県の河川に生息するハリヨ(写真:秦康之)

<関連情報>

栄養豊富な食事に対するイトヨ( Gasterosteus aculeatus)の内臓脂肪沈着と脂質代謝反応 Visceral Fat Deposition and Lipidome Responses to a Nutrient-Rich Diet in the Japanese Three-Spined Stickleback (Gasterosteus aculeatus)

Bo-Jyun Chen, Yo Y. Yamasaki, Seiichi Mori, Jun Kitano
Zoological Science  Published:22 September 2026
DOI:https://doi.org/10.2108/zs260013

Abstract

Nutrient availability differs among habitats and can promote evolutionary divergence in metabolic traits. For example, freshwater habitats are typically deficient in polyunsaturated fatty acids, such as docosahexaenoic acid (DHA), and freshwater fishes often exhibit a higher capacity for DHA biosynthesis from precursor fatty acids than marine fishes. However, it remains unknown whether freshwater and marine fishes differ in the patterns of lipid deposition or in the utilization of fatty acids such as DHA. In this study, we tested whether marine and stream ecotypes of the three-spined stickleback (Gasterosteus aculeatus) have diverged in lipid deposition strategies and DHA utilization. Fish were reared under nutritionally and energetically poor or rich conditions, and body growth, visceral fat deposition, blood cholesterol levels, and whole-body lipid composition were analyzed. We found that the rich diet promoted growth in both ecotypes, but visceral fat deposition diverged with stream fish accumulating more visceral fat and marine fish showing variable responses. Blood cholesterol levels were unaffected by diet and did not differ significantly between ecotypes. Lipidomic analyses revealed that the rich diet increased the abundance of phosphatidylethanolamine and phosphatidylserine, and the proportion of DHA in several lipid classes, including membrane lipids, in both ecotypes. In conclusion, stream sticklebacks tended to accumulate more visceral fat under a lipid- and energy-rich diet than marine sticklebacks, whereas lipidomic responses were largely conserved between ecotypes. These results indicate that divergence between marine and stream sticklebacks may primarily involve differences in energy storage strategies, with less pronounced divergence in core lipid metabolic pathways.

生物工学一般
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