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首页> 外文期刊>Marine ecology progress series >Black sea urchins evaluate predation risk using chemical signals from a predator and injured con- and heterospecific prey
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Black sea urchins evaluate predation risk using chemical signals from a predator and injured con- and heterospecific prey

机译:黑海胆使用捕食者和受伤的雌性和异种猎物的化学信号评估捕食风险

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ABSTRACT: The traits related to foraging and eating are crucial to our understanding of food webs. The use of signals to detect predators has strong relevance for prey survival. The black sea urchin Echinometra lucunter cohabits with the green sea urchin Lytechinus variegatus and a generalist echinivorous predator, the cushion sea star Oreaster reticulatus. Because black sea urchins evolved under the same predation pressure as green sea urchins and, consequently, were exposed to the same sensory cues, they are hypothesised to be able to detect echinivorous predator odours and chemical cues from green sea urchins as well as from injured conspecifics to elicit antipredator responses. Black sea urchins responded strongly to predators fed on a diet of conspecifics, showed a weak response to predators fed on green sea urchins and did not respond to a starved predator. The failure of black sea urchins to respond to hungry cushion sea stars probably increases their risk of being consumed. Black sea urchins, however, responded strongly to injured conspecific and, to a lesser degree, to heterospecific prey. In addition to the dilution effect imposed by the habit of living in dense assemblages, black sea urchins use the defence strategy of detecting an upcoming threat via chemical cue from injured prey when cues emanating from the echinivorous predator itself are not detectable.
机译:摘要:与觅食和进食有关的特征对于我们对食物网的理解至关重要。使用信号来检测掠食者与猎物的生存息息相关。黑海胆 Echinometra lucunter 与绿海胆 Lytechinus variegatus 和全能食肉动物捕食者,即靠垫海星 Oreaster reticulatus 同居。海胆在与绿海胆相同的捕食压力下进化,因此被暴露于相同的感官线索,据推测,它们能够检测到绿海胆以及受伤的特定物种引起的食肉性捕食者气味和化学线索。反掠食者的反应。黑海胆对以特定种类饮食喂养的捕食者反应强烈,对绿海胆喂养的捕食者反应较弱,对饥饿的捕食者没有反应。黑海顽童无法对饥饿的垫层海星做出反应可能会增加其被食用的风险。但是,黑海胆对受伤的同种动物反应强烈,而对异种猎物的反应程度较小。除了生活在密集种群中的习惯所带来的稀释作用外,黑海胆还采用防御策略,当无法检测到来自食肉食肉动物本身的线索时,通过受伤的猎物的化学线索检测即将到来的威胁。

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