Circatidal control of gene expression in the deep-sea hot vent shrimp Rimicaris leurokolos.

IF 3.5 1区 生物学 Q1 BIOLOGY Proceedings of the Royal Society B: Biological Sciences Pub Date : 2025-02-01 Epub Date: 2025-02-05 DOI:10.1098/rspb.2024.2970
Hongyin Zhang, Takuya Yahagi, Norio Miyamoto, Chong Chen, Qingqiu Jiang, Pei-Yuan Qian, Jin Sun
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Abstract

Biological clocks are a ubiquitous feature of all life, enabling the use of natural environmental cycles to track time. Although studies on circadian rhythms have contributed greatly to the knowledge of chronobiology, biological rhythms in dark biospheres such as the deep sea remain poorly understood. Here, based on a free-running experiment in the laboratory, we reveal potentially endogenous rhythms in the gene expression of the deep-sea hydrothermal vent shrimp Rimicaris leurokolos. Oscillations with approximately 12 h periods, probably reflecting tidal influence, greatly prevail over others in the temporal transcriptome, indicating R. leurokolos probably depends on a circatidal clock consisting of at least some components independent from the circadian clocks. The tidal transcripts exhibit an antiphased expression pattern divided into two internally synchronized clusters, correlated with wide-ranging biological processes that occur in the nucleus and cytoplasm, respectively. In addition, the tidal transcripts showed great similarities with genes in fruit flies and mice exhibiting approximately 12 h ultradian rhythms, indicating that the tide probably had a broad impact on the evolution of approximately 12 h oscillations found across the Metazoa. These findings not only provide new insights into the temporal adaptations in deep-sea organisms but also highlight hydrothermal vent organisms as intriguing models for chronobiological studies, particularly those linked to approximately 12 h ultradian rhythms.

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深海热泉对虾基因表达的周期调控。
生物钟是所有生命中普遍存在的特征,可以利用自然环境周期来跟踪时间。尽管对昼夜节律的研究对时间生物学的知识做出了巨大贡献,但对深海等黑暗生物圈的生物节律仍然知之甚少。本文基于实验室自由运行实验,揭示了深海热液对虾(Rimicaris leurokolos)基因表达的潜在内源性节律。周期约为12小时的振荡,可能反映了潮汐的影响,在时间转录组中大大优于其他转录组,这表明白斑斑蝽可能依赖于至少由一些独立于昼夜节律钟的成分组成的昼夜节律钟。潮汐转录本表现出反相表达模式,分为两个内部同步的簇,分别与发生在细胞核和细胞质中的广泛生物过程相关。此外,潮汐转录本与果蝇和小鼠的基因非常相似,显示出大约12小时的超昼夜节律,这表明潮汐可能对整个后生动物中大约12小时振荡的进化产生了广泛的影响。这些发现不仅为深海生物的时间适应提供了新的见解,而且突出了热液喷口生物作为时间生物学研究的有趣模型,特别是那些与大约12小时的超昼夜节律有关的模型。
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来源期刊
CiteScore
7.90
自引率
4.30%
发文量
502
审稿时长
1 months
期刊介绍: Proceedings B is the Royal Society’s flagship biological research journal, accepting original articles and reviews of outstanding scientific importance and broad general interest. The main criteria for acceptance are that a study is novel, and has general significance to biologists. Articles published cover a wide range of areas within the biological sciences, many have relevance to organisms and the environments in which they live. The scope includes, but is not limited to, ecology, evolution, behavior, health and disease epidemiology, neuroscience and cognition, behavioral genetics, development, biomechanics, paleontology, comparative biology, molecular ecology and evolution, and global change biology.
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