Koroleva Anastasiya G, Vakhteeva Eugenia A, Epifantsev Alexander A, Sukhanova Lyubov V, Yakhnenko Vera M, Glyzina Olga Yu, Tolstikova Lyubov I, Cherezova Valeria M, Sidorova Tuyana V, Potapov Sergey A, Kirilchik Sergey V, Sapozhnikova Yulia P
Limnological Institute Siberian Branch of the Russian Academy of Sciences, 3 Ulan-Batorskaya, Irkutsk 664033, Russia.
Animals (Basel). 2024 Oct 2;14(19):2839. doi: 10.3390/ani14192839.
Acclimation through the hormesis effect increases the plasticity of organisms, which has been shown for many ectothermic animals, including fish. We investigated the effect of temperature acclimation in Baikal whitefish (Dybowski, 1874). Telomere length, telomerase activity, and the expression of genes, whose products are involved in the regulation of telomere length and defense against reactive oxygen species, were selected to assess the state of the larvae. Acclimation and acute temperature stress (+12 °C) had no effect on telomere length, but altered telomerase activity (acclimation decreased it; stress increased it) and the levels of genes expression. Under stress, the expression of superoxide dismutase genes was increased in acclimated larvae and that of glutathione peroxidases in non-acclimated larvae, which may indicate lower reactive oxygen species formation and slower antioxidant responses in acclimated fish. The expression of some telomere-related genes was reduced under temperature stress, but the expression of the and genes, whose products improve the control of telomere length by preventing them from lengthening or shortening, was increased in acclimated individuals. The data obtained indicate a positive effect of acclimation on the state of the Baikal whitefish larvae by remodulation of their telomerase activity and the transcriptional profile.
通过兴奋效应进行的驯化增加了生物体的可塑性,这在包括鱼类在内的许多变温动物中都有体现。我们研究了贝加尔白鲑(Dybowski,1874年)温度驯化的影响。选择端粒长度、端粒酶活性以及其产物参与端粒长度调节和抗氧化防御的基因表达,来评估幼体的状态。驯化和急性温度胁迫(+12°C)对端粒长度没有影响,但改变了端粒酶活性(驯化使其降低;胁迫使其增加)以及基因表达水平。在胁迫下,驯化幼体中超氧化物歧化酶基因的表达增加,而非驯化幼体中谷胱甘肽过氧化物酶的表达增加,这可能表明驯化鱼类中活性氧的形成较低且抗氧化反应较慢。在温度胁迫下,一些与端粒相关的基因表达降低,但在驯化个体中,其产物通过防止端粒延长或缩短来改善端粒长度控制的基因和基因的表达增加。获得的数据表明,驯化通过调节其端粒酶活性和转录谱对贝加尔白鲑幼体的状态产生了积极影响。