Learning the native pond odor as one of the mechanisms of olfactory orientation in juvenile smooth newt Lissotriton vulgaris.

IF 1.9 4区 心理学 Q3 BEHAVIORAL SCIENCES Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology Pub Date : 2024-01-01 Epub Date: 2023-06-02 DOI:10.1007/s00359-023-01640-y
Yaroslav Aleksandrovich Vyatkin, Vladimir Vladimirovich Shakhparonov
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Abstract

Olfaction is an important mechanism of orientation in amphibians toward the breeding site. It is known that anurans can memorize the odor of the native pond during larval development and prefer this odor prior to the beginning of dispersion. However, such a mechanism in urodeles has not been studied yet. We conducted experiments on recognition of the odor of a native water body in juveniles of the smooth newt Lissotriton vulgaris. One group of larvae were reared in pure water (control), the other group in water with morpholine (10-7 mol/L). A few days after metamorphosis, the newts were tested under paired-choice conditions in a T-maze. A total of 73 newts from the experimental group and 47 newts from the control group were tested. The results of the experiment show that the newts in the experimental group preferred the morpholine solution, whereas the individuals of the control group made the choice randomly. We conclude that newts can learn the odor of the environment in which they developed and use this memory for orientation in later stages of life.

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学习原生池塘气味是幼滑蝾螈的嗅觉定向机制之一。
嗅觉是两栖动物向繁殖地定向的重要机制。众所周知,无尾两栖动物能在幼虫发育过程中记住原生池塘的气味,并在开始散布之前偏好这种气味。然而,这种机制在urodeles中还没有被研究过。我们进行了平滑蝾螈幼体识别原生水体气味的实验。一组幼体在纯水(对照组)中饲养,另一组在含有吗啉(10-7 mol/L)的水中饲养。蝾螈变态几天后,在 T 型迷宫中进行配对选择测试。共有 73 只实验组蝾螈和 47 只对照组蝾螈接受了测试。实验结果表明,实验组的蝾螈更喜欢吗啉溶液,而对照组的个体则随机做出选择。我们的结论是,蝾螈可以学习其生长环境的气味,并在以后的生活中利用这种记忆进行定向。
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来源期刊
CiteScore
4.80
自引率
14.30%
发文量
67
审稿时长
1 months
期刊介绍: The Journal of Comparative Physiology A welcomes original articles, short reviews, and short communications in the following fields: - Neurobiology and neuroethology - Sensory physiology and ecology - Physiological and hormonal basis of behavior - Communication, orientation, and locomotion - Functional imaging and neuroanatomy Contributions should add to our understanding of mechanisms and not be purely descriptive. The level of organization addressed may be organismic, cellular, or molecular. Colour figures are free in print and online.
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