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Field Assessment of the Predation Risk - Food Availability Trade-Off in Crab Megalopae Settlement

机译:捕食风险的实地评估-蟹足定居点的食物供应权衡

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摘要

Settlement is a key process for meroplanktonic organisms as it determines distribution of adult populations. Starvation and predation are two of the main mortality causes during this period; therefore, settlement tends to be optimized in microhabitats with high food availability and low predator density. Furthermore, brachyuran megalopae actively select favorable habitats for settlement, via chemical, visual and/or tactile cues. The main objective in this study was to assess the settlement of Metacarcinus edwardsii and Cancer plebejus under different combinations of food availability levels and predator presence. We determined, in the field, which factor is of greater relative importance when choosing a suitable microhabitat for settling. Passive larval collectors were deployed, crossing different scenarios of food availability and predator presence. We also explore if megalopae actively choose predator-free substrates in response to visual and/or chemical cues. We tested the response to combined visual and chemical cues and to each individually. Data was tested using a two-way factorial design ANOVA. In both species, food did not cause significant effect on settlement success, but predator presence did, therefore there was not trade-off in this case and megalopae respond strongly to predation risk by active aversion. Larvae of M. edwardsii responded to chemical and visual cues simultaneously, but there was no response to either cue by itself. Statistically, C. plebejus did not exhibit a differential response to cues, but reacted with a strong similar tendency as M. edwardsii. We concluded that crab megalopae actively select predator-free microhabitat, independently of food availability, using chemical and visual cues combined. The findings in this study highlight the great relevance of predation on the settlement process and recruitment of marine invertebrates with complex life cycles.
机译:对于浮游生物来说,定居是关键过程,因为它决定了成年种群的分布。饥饿和被捕食是这一时期的两个主要死亡原因。因此,在具有高食物供应和低捕食者密度的微生境中,定居趋于优化。此外,腕足巨蟹通过化学,视觉和/或触觉提示积极地选择有利的栖息地。这项研究的主要目的是评估在食物可利用水平和捕食者存在的不同组合下,爱德华Meta鱼和牛膝菌的沉降。我们在现场确定了选择合适的微生境进行沉降时哪个因素相对重要。部署了被动幼虫收集器,跨越了粮食供应和捕食者存在的不同场景。我们还探讨了巨眼动物是否根据视觉和/或化学提示主动选择不含捕食者的底物。我们测试了对视觉和化学线索的结合以及对每个线索的反应。使用双向因子设计方差分析测试数据。在这两个物种中,食物都没有对定居成功产生显着影响,但是捕食者的存在却没有,因此在这种情况下没有权衡取舍,并且食蚁兽通过主动厌恶对捕食风险有强烈的反应。爱德华氏菌的幼虫同时对化学和视觉提示作出反应,但是对任何一种提示本身都没有反应。从统计学上讲,C。plebejus对线索没有表现出不同的反应,但其反应与爱德华酵母相似。我们得出的结论是,使用化学和视觉线索相结合,食蟹蟹会主动选择无捕食者的微生境,而与食物供应无关。这项研究的结果突出了捕食对具有复杂生命周期的海洋无脊椎动物的定居过程和募集具有重大意义。

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