不同饲养温度下雄性孔雀鱼表型性状的调节:实验证据

Q3 Environmental Science
Md Moshiur Rahman, Iva Alam Pinkey, Jannatul Ferthous, S. T. Arafat, S. M. Rahman, M. Asaduzzaman, Md. Mostafizur Rahman, M. Rouf
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引用次数: 3

摘要

气候变化,尤其是全球变暖,不断地对许多生物施加选择压力,导致表型可塑性,特别是通过表达不同的适应性表型来适应不断变化的环境条件。因此,本研究探讨了雄性孔雀鱼(Poecilia reticulata)对环境(28±0.91°C)、高(32±0.12°C)和低(22±0.17°C)饲养温度的表型反应。从野外收集大小几乎相等的雄性幼鱼,饲养30天,维持除水温外其他处理的必要条件相似。研究结果显示,与环境和低温组相比,高温饲养的鱼求爱次数明显减少,存活率降低,体型缩小,体型变形,颜色图案有限,精子束数量减少。另一方面,低温饲养的雄鱼求爱次数显著高于常温饲养的雄鱼,而常温饲养的雄鱼体型和色彩面积显著高于低温饲养的雄鱼。有趣的是,研究结果还揭示了在热诱导的应激条件下(即高温和低温)特征之间的一些权衡。这些发现为鱼类表型性状的热条件依赖性表达提供了进一步的信息,从而推断出由于前所未有的气候变化,鱼类将如何适应预测的变化的水生环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modulation of phenotypic traits under different rearing temperatures: Experimental evidence in male guppy (Poecilia reticulata)
Climate change particularly global warming unceasingly imposes a selective pressure in many organisms that results in phenotypic plasticity particularly by expressing different adaptive phenotypes to shifting environmental conditions. The present study was, therefore, conducted to explore the phenotypic responses of male guppy ( Poecilia reticulata ), a popular model fish, to an ambient (28±0.91°C), high (32±0.12°C) and low (22±0.17°C) rearing temperature. Almost equal sized juvenile males were collected from the wild and reared up to 30 days maintaining necessary conditions similar among treatments except the water temperature. The findings revealed that high-temperature reared fish had significantly lower number of courtships, reduced survival, decreased body size, deformed body shape, limited colour patterns and reduced sperm bundle number than the ambient- and low-temperature groups. On the other hand, low-treatment males performed significantly higher number of courtships than ambient-temperature group, while ambient-temperature reared males possessed significantly higher body size and iridescent colour area than low- temperature treatment. Interestingly, the findings also revealed some trade-offs between traits under thermal-induced stressed conditions (i.e. both high and low temperatures). These findings elicit further information about the thermal condition dependent expression of phenotypic traits of fishes which infer about how fish species will adapt in the predicted changing aquatic environments because of unprecedented climate change.
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来源期刊
International Journal of Aquatic Biology
International Journal of Aquatic Biology Environmental Science-Ecology
CiteScore
1.30
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