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7 results for “Zootoca”
Figure 2 in Factors influencing the level of infestation of Ixodes ricinus (Acari: Ixodidae) on Lacerta agilis and Zootoca vivipara (Squamata: Lacertidae)
Figure 2 Mean number (± SE) of ticks per body size class (I to IV), and sex-age category (juv: juvenile; F: female, M: male), found in (A) transformed conditions and (B) natural conditions.
Figure 1 in Factors influencing the level of infestation of Ixodes ricinus (Acari: Ixodidae) on Lacerta agilis and Zootoca vivipara (Squamata: Lacertidae)
Figure 1 Mean number (± SE) of ticks per body size class (I to IV) and Sex-age category (juv: juvenile; F: female, M: male), found on (A) Zootoca viviparaand (B)Lacerta agilis.
Figure 3 in Factors influencing the level of infestation of Ixodes ricinus (Acari: Ixodidae) on Lacerta agilis and Zootoca vivipara (Squamata: Lacertidae)
Figure 3 Mean number of ticks found on different locations on the lizards bodies (± standard errors).
Dataset Mother-offspring conflict for water varies across altitude and is mitigated in the oviparous form of the bimodal lizard Zootoca vivipara
<p>The female dataset provides the responses of gravid and non reproductive female common lizard to a two week period of water restriction. This includes the measures of body mass (BM) and plasma osmolality (osmo) at the onset and the end of this timing. Dataset also reports different information on reproductive performance and characteristics of the population they came from. </p> <p>The juvenile dataset provides the morphological (snout-vent length: SVL, body mass: BM) and the sex of hatchling. We also included information about mother identity (cltuch effect), mother treatment and the characteristics of populations they came from. </p>
Data from: Corticosterone regulates multiple colour traits in Lacerta [Zootoca] vivipara males
Ornamental colours usually evolve as honest signals of quality, which is supported by the fact that they frequently depend on individual condition. It has generally been suggested that some, but not all types of ornamental colours are condition dependent, indicating that different evolutionary mechanisms underlie the evolution of multiple types of ornamental colours even when these are exhibited by the same species. Stress hormones, which negatively affect condition, have been shown to affect colour traits based on different pigments and structures, suggesting that they mediate condition dependence of multiple ornament types both among and within individuals. However, studies investigating effects of stress hormones on different ornament types within individuals are lacking, and thus, evidence for this hypothesis is scant. Here, we investigated whether corticosterone mediates condition dependence of multiple ornaments by manipulating corticosterone levels and body condition (via food availability) using a two-factorial design and by assessing their effect on multiple colour traits in male common lizards. Corticosterone negatively affected ventral melanin- and carotenoid-based coloration, whereas food availability did not affect coloration, despite its significant effect on body condition. The corticosterone effect on melanin- and carotenoid-based coloration demonstrates the condition dependence of both ornaments. Moreover, corticosterone affected ventral coloration and had no effect on the nonsexually selected dorsal coloration, showing specific effects of corticosterone on ornamental ventral colours. This suggests that corticosterone simultaneously mediates condition dependence of multiple colour traits and that it therefore accounts for covariation among them, which may influence their evolution via correlational selection.
Brusch et al_Zootoca
<p>Full data and R script for Brusch et al Zootoca manuscript</p>
Data from: Corticosterone regulates multiple colour traits in Lacerta [Zootoca] vivipara males
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