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The genetics of phenotypic plasticity. VIII. The cost of plasticity in Daphnia pulex

机译:表型可塑性的遗传学。八。水蚤的可塑性成本

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In a heterogeneous world, the optimal strategy for an individual is to continually change its phenotype to match the optimal type. However, in the real world, organisms do not behave in this fashion. One potential reason why is that phenotypic plasticity is costly. We measured production and maintenance costs of plasticity in the freshwater crustacean Daphnia pulex (Cladocera: Crustacea) in response to the presence of chemical signals from a predator, the insect Chaoborus americanus. We looked at three changes in juvenile body size and shape: body length, body depth, and tailspine length. Fitness costs were measured as changes in adult growth and fecundity, and summarized as the intrinsic rate of increase (r) for individuals reared in the presence or absence of Chaoborus extract. The cost of plasticity was measured as a multiple regression of mean clone fitness against trait and trait plasticity. We found scant evidence for either production or maintenance costs of plasticity. We also failed to find direct costs of these juvenile structures, which is surprising, as others have found such costs. We attribute the lack of measurable direct or plasticity costs to a decrease in metabolic rates in the presence of the Chaoborus extract. This decrease in metabolic rate may have compensated for any cost increases. We call for more extensive measures of the costs of plasticity, especially under natural conditions, and the incorporation of costs into evolutionary models. [References: 46]
机译:在异构世界中,个人的最佳策略是不断改变其表型以匹配最佳类型。但是,在现实世界中,生物不会以这种方式行为。原因之一可能是表型可塑性昂贵。我们根据捕食者昆虫美洲潮虫的化学信号,测量了淡水甲壳类水蚤(Daphnia pulex)(Cladocera:Crustacea)可塑性的生产和维护成本。我们研究了少年体型和体型的三种变化:体长,体深和后脊长。健身成本以成年生长和繁殖力的变化进行衡量,并概括为在存在或不存在潮虫提取物的情况下饲养的个体的内在增长率(r)。将可塑性的成本作为平均克隆适合度与性状和性状可塑性的多元回归来衡量。我们发现缺乏可塑性的生产或维护成本的证据。我们也没有找到这些少年结构的直接成本,这令人惊讶,因为其他人也发现了这种成本。我们将缺乏可测量的直接或可塑性成本归因于潮草提取物存在下新陈代谢率的降低。代谢率的这种下降可能已经弥补了任何成本增加。我们要求对可塑性的成本进行更广泛的衡量,尤其是在自然条件下,并将成本纳入进化模型。 [参考:46]

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