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April 20, 2025 at 1:48 AM
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September 13, 2025 at 8:50 PM
タイトル: 中央アメリカの樹上カエル(Pithecopus hypochondrialis)における夜行性迷彩の潜在的メカニズムとしての生理的色変化
要点1: P. hypochondrialisは夜間、背景の色に合わせて短時間で色を変化させ、蛇、哺乳類、鳥の捕食者に対して効果的な迷彩を維持することが示された。
要点2: カエルは葉の散らばりや草地といった背景に合わせて色を変化させ、特に鳥の捕食者に対して最適な迷彩を達成していることが明らかになった。
Physiological Color Change in the Neotropical Tree Frog (Pithecopus hypochondrialis) as a Potential Mechanism of Nocturnal Camouflage.
【Am Nat】<AbstractText>AbstractAnimals employ various mechanisms for camouflage, including color change, that may facilitate hab...
pubmed.ncbi.nlm.nih.gov
October 31, 2025 at 11:49 PM
June 18, 2025 at 11:24 PM
Cognitive processes are robust to early environmental conditions in two lizard species BehavEcol
Cognitive processes are robust to early environmental conditions in two lizard species
AbstractAnimals must acquire new information through learning to adjust their behavior adaptively. However, learning ability can be constrained by conditions experienced during early development, when the brain is especially susceptible to environmental conditions. For example, temperature can result in phenotypically plastic adjustments to growth, metabolism, and learning in ectotherms. In vertebrates, thermal conditions can increase the production of glucocorticoid (GCs) - ‘stress’ hormones. Maternal GCs can be transmitted to offspring during development, potentially impacting their learning abilities. GCs and thermal environments are, therefore, predicted to have interactive effects on the development of learning in ectotherms. Here, we investigated the combined effects of prenatal corticosterone (CORT) - the main GC in reptiles - and incubation temperature on associative learning using two species of lizards, Lampropholis delicata and L. guichenoti. We manipulated CORT levels and temperature in a 2x2 factorial design, and then subjected juveniles to a color-associative learning task. We predicted that elevated CORT and low temperatures would impair associative learning. However, both species showed similar learning rates independently of treatment. Our results suggest that these two species may have evolved mechanisms to maintain learning performance despite prenatal challenges. We also found that color affected decision-making in both species. Overall, we observed a non-learned preference towards blue, underscoring the need to carefully select the color used in cognitive tests involving visual stimuli.
dlvr.it
May 31, 2025 at 11:18 PM
Cognitive processes are robust to early environmental conditions in two lizard species BehavEcol
Cognitive processes are robust to early environmental conditions in two lizard species
AbstractAnimals must acquire new information through learning to adjust their behavior adaptively. However, learning ability can be constrained by conditions experienced during early development, when the brain is especially susceptible to environmental conditions. For example, temperature can result in phenotypically plastic adjustments to growth, metabolism, and learning in ectotherms. In vertebrates, thermal conditions can increase the production of glucocorticoid (GCs) - ‘stress’ hormones. Maternal GCs can be transmitted to offspring during development, potentially impacting their learning abilities. GCs and thermal environments are, therefore, predicted to have interactive effects on the development of learning in ectotherms. Here, we investigated the combined effects of prenatal corticosterone (CORT) - the main GC in reptiles - and incubation temperature on associative learning using two species of lizards, Lampropholis delicata and L. guichenoti. We manipulated CORT levels and temperature in a 2x2 factorial design, and then subjected juveniles to a color-associative learning task. We predicted that elevated CORT and low temperatures would impair associative learning. However, both species showed similar learning rates independently of treatment. Our results suggest that these two species may have evolved mechanisms to maintain learning performance despite prenatal challenges. We also found that color affected decision-making in both species. Overall, we observed a non-learned preference towards blue, underscoring the need to carefully select the color used in cognitive tests involving visual stimuli.
dlvr.it
May 30, 2025 at 4:17 PM