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水分限制对一岁普通蜥蜴(胎生蜥蜴)生长速率、活动及体温的影响

Effect of water constraint on growth rate, activity and body temperature of yearling common lizard (Lacerta vivipara).

作者信息

Lorenzon Pauline, Clobert Jean, Oppliger Anne, John-Alder Henry

机构信息

Laboratoire Fonctionnement et Evolution des Systèmes Ecologiques, UMR 7625, Université Pierre et Marie Curie, Bât. A., 7ème étage, 7 quai Saint Bernard, Case 237, F-75232 Paris cedex 05, France e-mail:

IZEA, Bâtiment de Biologie, Universite de Lausanne, CH-1015 Lausanne, Switzerland, , , , , , CH.

出版信息

Oecologia. 1999 Mar;118(4):423-430. doi: 10.1007/s004420050744.

Abstract

We investigated the effect of water constraints on yearling Lacerta vivipara, a widespread species of lizard inhabiting European peat bogs and heath land. We conducted a laboratory experiment to investigate plasticity of growth rate, activity level and preferred body temperature. We subjected individuals of two source habitats (dry vs humid) to two laboratory conditions of water supply resulting in different air relative humidity and water availability (high vs low). We observed that a low water supply induced a lower growth rate and lower activity level, suggesting that growth limitation is correlated with adaptive responses to avoid dehydration. However, individuals from the two habitats selected different body temperatures when restricted in water and showed different ratios between growth and activity. This suggests that there is population variability in phenotypic plasticity with respect to water availability in the habitat. Field observations conducted in six natural populations, classified into two groups (dry vs humid habitat) also suggest that growth rate in nature is constrained by water availability.

摘要

我们研究了水分限制对一岁欧洲胎生蜥蜴(一种广泛分布于欧洲泥炭沼泽和石南荒地的蜥蜴物种)的影响。我们进行了一项实验室实验,以研究生长速率、活动水平和偏好体温的可塑性。我们将来自两种源栖息地(干燥与潮湿)的个体置于两种实验室供水条件下,从而产生不同的空气相对湿度和水分可利用性(高与低)。我们观察到,低供水导致较低的生长速率和活动水平,这表明生长受限与避免脱水的适应性反应相关。然而,来自两种栖息地的个体在水分受限情况下选择了不同的体温,并且在生长与活动之间表现出不同的比率。这表明,在栖息地水分可利用性方面表型可塑性存在种群变异性。在六个自然种群中进行的实地观察,分为两组(干燥与潮湿栖息地),也表明自然界中的生长速率受到水分可利用性的限制。

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