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Numbers neighbors and hungry predators: What makes chemically defended aposematic prey susceptible to predation?

机译:数字邻居和饥饿的捕食者:是什么使化学捍卫的主动猎物易受捕食的影响?

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摘要

Many chemically defended aposematic species are characterized by relatively low toxin levels, which enables predators to include them in their diets under certain circumstances. Knowledge of the conditions governing the survival of such prey animals—especially in the context of the co‐occurrence of similar but undefended prey, which may result in mimicry‐like interactions—is crucial for understanding the initial evolution of aposematism. In a one‐month outdoor experiment using fish (the common carp Cyprinus carpio) as predators, we examined the survival of moderately defended aposematic tadpole prey (the European common toad Bufo bufo) with varying absolute densities in single‐species prey systems or varying relative densities in two‐species prey systems containing morphologically similar but undefended prey (the European common frog Rana temporaria). The density effects were investigated in conjunction with the hunger levels of the predator, which were manipulated by means of the addition of alternative (nontadpole) food. The survival of the B. bufo tadpoles was promoted by increasing their absolute density in the single‐species prey systems, increasing their relative density in the two‐species prey systems, and providing ample alternative food for the predator. Hungry predators eliminated all R. temporaria individuals regardless of their proportion in the prey community; in treatments with ample alternative food, high relative B. bufo density supported R. temporaria survival. The results demonstrated that moderately defended prey did benefit from high population densities (both absolute and relative), even under long‐term predation pressure. However, the physiological state of the predator was a crucial factor in the survival of moderately defended prey. While the availability of alternative prey in general should promote the spread and maintenance of aposematism, the results indicated that the resemblance between the co‐occurring defended and undefended prey may impose mortality costs on the defended model species, even in the absence of actual mimicry.
机译:许多化学防护剂的毒素水平的特征在于毒素水平相对较低,这使得捕食者能够在某些情况下在其饮食中包含它们。了解治疗这种猎物动物的生存条件 - 特别是在相似但未沉积的猎物的共同发生的背景下,这可能导致模仿样的相互作用 - 对于理解所述初始化的初始演变至关重要。使用鱼(鲤鱼Cyprinus Carpio)作为捕食者的一个月的户外实验,我们研究了适度捍卫的尸体蝌蚪猎物(欧洲共同蟾蜍Bufo)的生存,以不同物种猎物系统或不同的相对的绝对密度两个物种猎物系统中的密度,包含形态学相似但未义的猎物(欧洲共同青蛙rana Temporaria)。研究密度效应与捕食者的饥饿水平结合,其通过添加替代(Nontadpole)食物来操纵。 B.Bufo蝌蚪的存活是通过在单种物种猎物系统中提高其绝对密度来促进的,提高了两种物种猎物系统中的相对密度,并为捕食者提供充分的替代食物。无论他们在猎物社区中的比例,饥饿的捕食者都消除了所有R. Temporaria个人;在含有充足的替代食物的治疗中,高相对B. Bufo密度支持R. Temporaria Survival。结果表明,即使在长期捕食压力下,中等辩护的猎物也能受益于高人口密度(绝对和相对)。然而,捕食者的生理状态是适度辩护猎物的生存中的关键因素。虽然替代猎物的可用性通常应该促进所谓性主义的传播和维护,但结果表明,即使在没有实际模仿的情况下,共同发生的防守和未修案猎物之间的相似性也可能施加死亡率。

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