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首页> 外文期刊>Hydrobiologia >Field observations of four Aurelia labiata jellyfish behaviours: swimming down in response to low salinity pre-empted swimming up in response to touch, but animal and plant materials were captured equally
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Field observations of four Aurelia labiata jellyfish behaviours: swimming down in response to low salinity pre-empted swimming up in response to touch, but animal and plant materials were captured equally

机译:野外观察四种唇形藻(Aurelia labiata)水母行为:因低盐度而低头游泳,先于因触碰而高头游泳,但动植物材料被均匀捕获

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摘要

Jellyfish live in complex environments and must continually make behavioural choices. In field observations, adult Aurelia labiata were confronted with a conflict between swimming up elicited by touch of the manubrium and swimming down elicited by low salinity. Following a touch, downward-swimming medusae (1.5-2.0 m deep) turned and swam to within 0.5 m of the surface when the salinity in the top 1.5 m of the water column was greater than 20 ppt but medusae uniformly refused to swim up into the top 1.25 m when the salinity was less than 20 ppt even after being touched three times. The central nervous system of A. labiata appears to have neural circuitry that specifies their response when medusae encounter stimuli that elicit incompatible behaviours. Upward-swimming adult medusae had animal, vegetable or cellulose (paper) material dispersed ahead of them. Medusae captured each material on the bell margin and transported it to a gastric pouch. Medusae displayed only minor behavioural differences in the process. Having sensory, neural and muscular systems organized to capture and pass to the stomach, a huge variety of materials allows medusae to survive in different seasons and environments
机译:水母生活在复杂的环境中,必须不断做出行为选择。在野外观察中,成年Aurelia labiata面临着因触碰手掌而引起的向上游泳与因盐度低而引起的向下游泳之间的冲突。触摸后,当水柱顶部1.5 m的盐度大于20 ppt时,向下游泳的美杜莎(1.5-2.0 m深)转向并游到地表0.5 m以内,但美杜莎一致拒绝游入当盐度低于20 ppt时,即使接触了3次,仍在最顶端1.25 m。唇纹曲霉的中枢神经系统似乎具有神经回路,当水母遇到引起不相容行为的刺激时,这种神经回路会指定其反应。向上游动的成年美杜莎的动物,蔬菜或纤维素(纸)材料散布在它们前面。美杜莎(Medusae)在钟形缘上捕获了每种物质,并将其运输到胃囊中。美杜莎在此过程中仅表现出较小的行为差异。拥有多种感官,神经和肌肉系统来捕获并传递至胃,多种材料使美杜莎能够在不同的季节和环境中生存

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