首页> 美国卫生研究院文献>other >Metabolic Characteristics and Response to High Altitude in Phrynocephalus erythrurus (Lacertilia: Agamidae) a Lizard Dwell at Altitudes Higher Than Any Other Living Lizards in the World
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Metabolic Characteristics and Response to High Altitude in Phrynocephalus erythrurus (Lacertilia: Agamidae) a Lizard Dwell at Altitudes Higher Than Any Other Living Lizards in the World

机译:三角脑的代谢特征及其对高海拔的响应 erythrurus(Lacertilia:Agamidae)比世界上任何其他活的蜥蜴都要高的蜥蜴栖息地

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摘要

Metabolic response to high altitude remains poorly explored in reptiles. In the present study, the metabolic characteristics of Phrynocephalus erythrurus (Lacertilia: Agamidae), which inhabits high altitudes (4500 m) and Phrynocephalus przewalskii (Lacertilia: Agamidae), which inhabits low altitudes, were analysed to explore the metabolic regulatory strategies for lizards living at high-altitude environments. The results indicated that the mitochondrial respiratory rates of P . erythrurus were significantly lower than those of P. przewalskii, and that proton leak accounts for 74~79% of state 4 and 7~8% of state3 in P. erythrurus vs. 43~48% of state 4 and 24~26% of state3 in P. przewalskii. Lactate dehydrogenase (LDH) activity in P. erythrurus was lower than in P. przewalskii, indicating that at high altitude the former does not, relatively, have a greater reliance on anaerobic metabolism. A higher activity related to β-hydroxyacyl coenzyme A dehydrogenase (HOAD) and the HOAD/citrate synthase (CS) ratio suggested there was a possible higher utilization of fat in P. erythrurus. The lower expression of PGC-1α and PPAR-γ in P. erythrurus suggested their expression was not influenced by cold and low PO2 at high altitude. These distinct characteristics of P. erythrurus are considered to be necessary strategies in metabolic regulation for living at high altitude and may effectively compensate for the negative influence of cold and low PO2.
机译:在爬行动物中,对高海拔的代谢反应仍然缺乏探索。在本研究中,分析了居住在高海拔地区(4500 m)的红头桑La(Purnocephalus erythrurus)(Lacertilia:Agamidae)和生活在低海拔地区的Phrynocephalus przewalskii(Lacertilia:Agamidae)的代谢特征,以探讨蜥蜴生活中的代谢调控策略。在高海拔环境中。结果表明P的线粒体呼吸频率。 红藻明显低于 P przewalskii ,并且在中,质子泄漏占状态4的74〜79%和状态3的7〜8% P 赤藓 中的状态4的43%至48%和状态3的24%至26% P przewalskii 中的乳酸脱氢酶(LDH)活性 P 赤藓 低于 P przewalskii ,表明在高海拔地区,前者相对而言对厌氧代谢的依赖性更大。与β-羟酰基辅酶A脱氢酶(HOAD)和HOAD /柠檬酸合酶(CS)比率有关的较高活性表明 P 赤藓 。 PGC-1α和PPAR-γ在 P 赤藓 表明,高海拔地区寒冷和低PO2对它们的表达没有影响。 的这些鲜明特征 P 赤藓 被认为是高海拔地区代谢调节的必要策略,并且可以有效补偿寒冷和低PO2的负面影响。

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