Environmental microbiomes drive chemotactile sensation in octopus

IF 45.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Cell Pub Date : 2025-06-17 DOI:10.1016/j.cell.2025.05.033
Rebecka J. Sepela, Hao Jiang, Yern-Hyerk Shin, Tessa L. Hautala, Jon Clardy, Ryan E. Hibbs, Nicholas W. Bellono
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引用次数: 0

Abstract

Microbial communities coat nearly every surface in the environment and have co-existed with animals throughout evolution. Whether animals exploit omnipresent microbial cues to navigate their surroundings is not well understood. Octopuses use “taste-by-touch” chemotactile receptors (CRs) to explore the seafloor, but how they distinguish meaningful surfaces from the rocks and crevices they encounter is unknown. Here, we report that secreted signals from microbiomes of ecologically relevant surfaces activate CRs to guide octopus behavior. Distinct molecules isolated from individual bacterial strains located on prey or eggs bind single CRs in subtly different structural conformations to elicit specific mechanisms of receptor activation, ion permeation and signal transduction, and maternal care and predation behavior. Thus, microbiomes on ecological surfaces act at the level of primary sensory receptors to inform behavior. Our study demonstrates that uncovering interkingdom interactions is essential to understanding how animal sensory systems evolved in a microbe-rich world.

Abstract Image

环境微生物组驱动章鱼的趋化反应感觉
微生物群落几乎覆盖了环境的每一个表面,并在进化过程中与动物共存。动物是否利用无处不在的微生物线索来导航周围环境还不太清楚。章鱼使用“触觉味觉”化学反应感受器(CRs)来探索海底,但它们如何从遇到的岩石和裂缝中区分有意义的表面尚不清楚。在这里,我们报告了生态相关表面微生物组分泌的信号激活CRs来指导章鱼的行为。从单个细菌菌株中分离出的不同分子位于猎物或卵上,以细微不同的结构构象与单个cr结合,从而引发受体激活、离子渗透和信号转导的特定机制,以及母性护理和捕食行为。因此,生态表面上的微生物组在初级感觉受体的水平上起作用,以通知行为。我们的研究表明,揭示界间相互作用对于理解动物感官系统如何在一个微生物丰富的世界中进化至关重要。
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来源期刊
Cell
Cell 生物-生化与分子生物学
CiteScore
110.00
自引率
0.80%
发文量
396
审稿时长
2 months
期刊介绍: Cells is an international, peer-reviewed, open access journal that focuses on cell biology, molecular biology, and biophysics. It is affiliated with several societies, including the Spanish Society for Biochemistry and Molecular Biology (SEBBM), Nordic Autophagy Society (NAS), Spanish Society of Hematology and Hemotherapy (SEHH), and Society for Regenerative Medicine (Russian Federation) (RPO). The journal publishes research findings of significant importance in various areas of experimental biology, such as cell biology, molecular biology, neuroscience, immunology, virology, microbiology, cancer, human genetics, systems biology, signaling, and disease mechanisms and therapeutics. The primary criterion for considering papers is whether the results contribute to significant conceptual advances or raise thought-provoking questions and hypotheses related to interesting and important biological inquiries. In addition to primary research articles presented in four formats, Cells also features review and opinion articles in its "leading edge" section, discussing recent research advancements and topics of interest to its wide readership.
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