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1 April 2002 MEASURING PROBABILISTIC REACTION NORMS FOR AGE AND SIZE AT MATURATION
Mikko Heino, Ulf Dieckmann, Olav Rune Godø
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Abstract

We present a new probabilistic concept of reaction norms for age and size at maturation that is applicable when observations are carried out at discrete time intervals. This approach can also be used to estimate reaction norms for age and size at metamorphosis or at other ontogenetic transitions. Such estimations are critical for understanding phenotypic plasticity and life-history changes in variable environments, assessing genetic changes in the presence of phenotypic plasticity, and calibrating size- and age-structured population models. We show that previous approaches to this problem, based on regressing size against age at maturation, give results that are systematically biased when compared to the probabilistic reaction norms. The bias can be substantial and is likely to lead to qualitatively incorrect conclusions; it is caused by failing to account for the probabilistic nature of the maturation process. We explain why, instead, robust estimations of maturation reaction norms should be based on logistic regression or on other statistical models that treat the probability of maturing as a dependent variable. We demonstrate the utility of our approach with two examples. First, the analysis of data generated for a known reaction norm highlights some crucial limitations of previous approaches. Second, application to the northeast arctic cod (Gadus morhua) illustrates how our approach can be used to shed new light on existing real-world data.

Corresponding Editor: T. Kawecki

Mikko Heino, Ulf Dieckmann, and Olav Rune Godø "MEASURING PROBABILISTIC REACTION NORMS FOR AGE AND SIZE AT MATURATION," Evolution 56(4), 669-678, (1 April 2002). https://doi.org/10.1554/0014-3820(2002)056[0669:MPRNFA]2.0.CO;2
Received: 4 December 2000; Accepted: 1 December 2001; Published: 1 April 2002
JOURNAL ARTICLE
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KEYWORDS
body size
life history
logistic regression
maturation
metamorphosis
phenotypic plasticity
reaction norm
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