ゴキブリの社会性形成の仕組みを解明 (German Cockroaches Appear to Be More Social Animals than Previously Thought)

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2026-08-05 ノースカロライナ州立大学(NC State)

米ノースカロライナ州立大学(NC State)の研究チームは、チャバネゴキブリ(German cockroach)の社会性が従来考えられていたよりも高度であることを明らかにした。研究では、個体同士の接触や化学シグナルによる情報交換だけでなく、集団内での社会的な相互作用が、採餌行動や隠れ場所の選択、繁殖、生存戦略に大きな影響を及ぼすことが示された。特に、群れの構成や仲間との関係性が個体の行動決定を左右し、単なる「集合(aggregation)」では説明できない協調的な社会行動が存在することが確認された。これらの知見は、チャバネゴキブリの集団形成や環境適応の理解を深めるだけでなく、社会行動を利用した新たな害虫防除技術の開発にもつながる可能性がある。ゴキブリを単独で行動する害虫ではなく、社会的ネットワークを持つ動物として捉えることで、誘引剤や防除手法の設計を見直す新たな視点を提供する研究成果となっている。

ゴキブリの社会性形成の仕組みを解明 (German Cockroaches Appear to Be More Social Animals than Previously Thought)
Adult and neonate German cockroaches. Photo credit: Matt Bertone, NC State University.

<関連情報>

社会性を持たない雑食動物であるドイツゴキブリの集団認識は、糞の臭いの好みに基づいており、その好みは食糞、食餌、学習によって調節される Group recognition in the German cockroach, a subsocial omnivore, is based on faecal odour preference that is modulated by coprophagy, diet and learning

Ayako Wada-Katsumata;Jamora A. Hamilton;Madhavi L. Kakumanu;Coby Schal
Proceedings of the Royal Society B  Published:05 Aug 2026
DOI:https://doi.org/10.1098/rspb.2025.3042

Abstract

Faecal odours attract cockroaches to aggregations, where conspecific faeces provide nutrients and seed the gut microbiota. Because these odours arise from the gut and faecal microbial communities, which are shaped by coprophagy and diet, discrete aggregations within a heterogeneous landscape can produce distinct faecal odour profiles. How such odour diversity influences recognition, group affiliation and ultimately aggregation remains unclear. We manipulated coprophagy and then diet quality in gnotobiotic nymphs to generate groups with distinct faecal odour signatures, then raised them to the adult stage and collected their faeces for behavioural assays. Naive nymphs lacking coprophagy experience were equally attracted to faecal odours from all treatment groups, suggesting an innate attraction to conspecific faeces. By contrast, experienced nymphs preferred the faecal odour of their natal group over foreign groups, suggesting learned group-specific recognition. In associative learning assays pairing a faecal odour with a glucose reward, nymphs preferentially aggregated with the conditioned odour over novel odours. These results show that aggregation in neonate cockroaches is mediated by both an innate attraction to conspecific faecal odour and learned preferences for specific odourants encountered during coprophagy soon after they hatch. We propose that these mechanisms guide neonates towards natal aggregations, facilitating acquisition of a locally adapted gut microbial community.

生物環境工学
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