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Why do brittle stars emit light? Behavioural and evolutionary approaches of bioluminescence

机译:为什么脆性恒星会发光?行为和进化方法的生物发光

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In this study, we investigated the functions of bioluminescence (the production of light by living organisms) in five brittle star species. Bioluminescence is a widespread phenomenon in the marine environment, and is especially abundant in the class Ophiuroidea. It is assumed that light in marine invertebrates mainly plays a role of defense against predation, and many mechanisms of defense have been proposed for brittle stars. We investigated the potential functions of startle effect (use of light to deter predator), use of light to advertise a predator that the prey is toxic (aposematic signal) and attraction of a secondary predator (function usually called "burglar-alarm effect"). Predatory experiments, involving one or two predators from different trophic levels allowed us determining benefits of the light emission for several brittle star species. We clearly demonstrated that the three functions cited behind are used in brittle stars. It is clear now that brittle stars use a wide variety of defensive mechanisms involving light.
机译:在这项研究中,我们研究了五种脆性恒星物种的生物发光(由活生物体产生光)的功能。生物发光是在海洋环境中的普遍现象,并且在麦兜铃类中尤其丰富。假定海洋无脊椎动物中的光主要起着抵御捕食的作用,并且已经提出了许多对脆性恒星的防御机制。我们研究了惊吓效应的潜在功能(使用光来阻止捕食者),使用光来宣传捕食者该猎物有毒(正信号)和次级捕食者的吸引(该功能通常称为“防盗警报效应”) 。掠食性实验涉及来自不同营养级别的一两个捕食者,这使我们能够确定几种脆性恒星物种的光发射优势。我们清楚地证明了后面引用的三个功能已用于脆性恒星中。现在清楚的是,脆性恒星使用多种涉及光的防御机制。

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