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首页> 外文期刊>Chronobiology international >Field chronobiology of a molluscan bivalve: How the moon and sun cycles interact to drive oyster activity rhythms
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Field chronobiology of a molluscan bivalve: How the moon and sun cycles interact to drive oyster activity rhythms

机译:软体动物双壳类的野外年代生物学:月亮和太阳周期如何相互作用以驱动牡蛎活动节律

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摘要

The present study reports new insights into the complexity of environmental drivers in aquatic animals. The focus of this study was to determine the main forces that drive mollusc bivalve behavior in situ. To answer this question, the authors continuously studied the valve movements of permanently immersed oysters, Crassostrea gigas, during a 1-year-long in situ study. Valve behavior was monitored with a specially build valvometer, which allows continuously recording of up to 16 bivalves at high frequency (10 Hz). The results highlight a strong relationship between the rhythms of valve behavior and the complex association of the sun-earth-moon orbital positions. Permanently immersed C. gigas follows a robust and strong behavior primarily driven by the tidal cycle. The intensity of this tidal driving force is modulated by the neap-spring tides (i.e., synodic moon cycle), which themselves depend of the earth-moon distance (i.e., anomalistic moon cycle). Light is a significant driver of the oysters' biological rhythm, although its power is limited by the tides, which remain the predominant driver. More globally, depending where in the world the bivalves reside, the results suggest their biological rhythms should vary according to the relative importance of the solar cycle and different lunar cycles associated with tide generation. These results highlight the high plasticity of these oysters to adapt to their changing environment.
机译:本研究报告了对水生动物环境驱动因素复杂性的新见解。这项研究的重点是确定在原位驱动软体双壳类行为的主要力量。为了回答这个问题,作者在为期一年的原位研究中,不断研究了永久浸没牡蛎Crassostrea gigas的气门运动。阀门的行为通过专门制造的阀门表进行监控,该阀门表可以在高频(10 Hz)下连续记录多达16个双阀门。结果突出了气门行为的节奏与太阳-地球-月亮轨道位置的复杂关联之间的密切关系。永久浸没的C. gigas遵循主要由潮汐周期驱动的稳健行为。该潮汐驱动力的强度由短时潮汐(即,合规月球周期)调节,其本身取决于地月距离(即,异常的月球周期)。光是牡蛎生物节律的重要驱动力,尽管其能量受到潮汐的限制,而潮汐仍然是主要驱动力。在全球范围内,取决于双壳类动物在世界上的哪个位置,结果表明它们的生物节律应根据太阳周期的相对重要性以及与潮汐产生相关的不同月球周期而变化。这些结果凸显了这些牡蛎的高可塑性,以适应不断变化的环境。

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