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Predator Dormancy is a Stable Adaptive Strategy due to Parrondo's Paradox

机译:由于Parrondo的悖论,捕食者休眠是一种稳定的自适应策略

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Many predators produce dormant offspring to escape harsh environmental conditions, but the evolutionary stability of this adaptation has not been fully explored. Like seed banks in plants, dormancy provides a stable competitive advantage when seasonal variations occur, because the persistence of dormant forms under harsh conditions compensates for the increased cost of producing dormant offspring. However, dormancy also exists in environments with minimal abiotic variation—an observation not accounted for by existing theory. Here it is demonstrated that dormancy can out‐compete perennial activity under conditions of extensive prey density fluctuation caused by overpredation. It is shown that at a critical level of prey density fluctuations, dormancy becomes an evolutionarily stable strategy. This is interpreted as a manifestation of Parrondo's paradox: although neither the active nor dormant forms of a dormancy‐capable predator can individually out‐compete a perennially active predator, alternating between these two losing strategies can paradoxically result in a winning strategy. Parrondo's paradox may thus explain the widespread success of quiescent behavioral strategies such as dormancy, suggesting that dormancy emerges as a natural evolutionary response to the self‐destructive tendencies of overpredation and related biological phenomena.
机译:许多捕食者产生休眠后代以逃避恶劣的环境条件,但这种适应的进化稳定性尚未得到充分探索。如植物中的种子库,当季节性变化发生时,休眠提供稳定的竞争优势,因为在恶劣条件下休眠形式的持久性补偿了产生休眠后代的成本增加。然而,在具有最小的非生物变化的环境中也存在休眠 - 未经现有理论的观察结果。在这里,据证明休眠可以在过度级别引起的广泛猎物密度波动的条件下延伸常年活动。结果表明,在突发密度波动的临界水平下,休眠成为进化稳定的策略。这被解释为Parrondo悖论的表现:虽然能够的休眠的捕食者的活性或休眠形式都不能够单独地竞争一致的捕食者,但这两个失去策略之间的交替可以矛盾地导致获胜策略。因此,Parrondo的悖论可以解释静止的静息行为策略的广泛成功,如休眠,表明休眠是对对超级性质和相关生物现象的自我破坏趋势的自然进化反应。

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