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虹鳟(瓦尔鲍姆)和鲤鱼(鲤属)大脑神经节苷脂的温度诱导季节性动态变化

Temperature-Induced Seasonal Dynamics of Brain Gangliosides in Rainbow Trout ( Walbaum) and Common Carp ( L.).

作者信息

Pavić Valentina, Viljetić Barbara, Blažetić Senka, Labak Irena, Has-Schön Elizabeta, Heffer Marija

机构信息

Department of Biology, Josip Juraj Strossmayer University of Osijek, Ulica cara Hadrijana 8A, 31000 Osijek, Croatia.

Department of Chemistry, Biochemistry and Clinical Chemistry, School of Medicine, Josip Juraj Strossmayer University of Osijek, 31000 Osijek, Croatia.

出版信息

Life (Basel). 2024 Oct 7;14(10):1273. doi: 10.3390/life14101273.

Abstract

This study aimed to determine the expression and distribution of gangliosides in specific regions of the brains of rainbow trout ( Walbaum) and common carp ( L.) with regard to seasonal temperature changes. Seasonal changes in ganglioside expression and distribution within the species were expected. The natural ecosystems of these fishes differ significantly due to their distinct habitat preferences, geographic distributions, and environmental requirements. Based on the fact that the common carp is eurythermic and adapts to a wide range of temperatures, while the rainbow trout is stenothermic and thrives in a narrower temperature range, it was expected that these species would exhibit distinct patterns of ganglioside modification as part of their adaptive response to temperature fluctuations. Immunohistochemistry using specific antibodies for the major brain gangliosides (GM1, GD1a, GD1b, GT1b), along with the Svennerholm method for quantifying sialic acid bound to gangliosides, revealed that cold acclimatization led to an increase in polysialylated gangliosides in the common carp brain and an increase in trisialogangliosides in the rainbow trout brain. Immunohistochemical analysis also identified region-specific changes in ganglioside expression, suggesting specific functional roles in neuronal adaptation. These results supported the hypothesis that the composition and distribution of brain gangliosides change in response to seasonal thermal shifts as part of the adaptive response. The results underscore the importance of gangliosides in neuronal function and adaptation to environmental stimuli, with implications for understanding fish resilience to temperature changes. This study offers valuable insights into species' temperature adaptation, with implications for physiological and ecological management and improved aquaculture practices. Future research could expand the species scale, study molecular mechanisms and regulatory pathways in ganglioside metabolism, and examine ganglioside interactions with membrane proteins and lipids for a deeper understanding of thermal adaptation.

摘要

本研究旨在确定虹鳟(Walbaum)和鲤鱼(L.)大脑特定区域中神经节苷脂的表达和分布与季节性温度变化的关系。预计物种内神经节苷脂的表达和分布会有季节性变化。这些鱼类的自然生态系统因栖息地偏好、地理分布和环境要求的不同而有显著差异。基于鲤鱼是广温性的,能适应广泛的温度范围,而虹鳟是狭温性的,在较窄的温度范围内生长良好这一事实,预计这些物种会表现出不同的神经节苷脂修饰模式,作为它们对温度波动的适应性反应的一部分。使用针对主要脑内神经节苷脂(GM1、GD1a、GD1b、GT1b)的特异性抗体进行免疫组织化学,以及使用斯文纳尔霍尔姆方法对与神经节苷脂结合的唾液酸进行定量分析,结果显示冷驯化导致鲤鱼脑中多唾液酸化神经节苷脂增加,虹鳟脑中三唾液酸神经节苷脂增加。免疫组织化学分析还确定了神经节苷脂表达的区域特异性变化,表明其在神经元适应中具有特定的功能作用。这些结果支持了这样的假设,即脑内神经节苷脂的组成和分布会随着季节性热变化而改变,作为适应性反应的一部分。这些结果强调了神经节苷脂在神经元功能和对环境刺激的适应中的重要性,对理解鱼类对温度变化的适应能力具有启示意义。本研究为物种的温度适应提供了有价值的见解,对生理和生态管理以及改进水产养殖实践具有启示意义。未来的研究可以扩大物种范围,研究神经节苷脂代谢的分子机制和调控途径,并研究神经节苷脂与膜蛋白和脂质的相互作用,以更深入地了解热适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f3e/11509357/a300925f0854/life-14-01273-g001.jpg

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