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首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Ontogenetic changes in citrate synthase and lactate dehydrogenase activity in the jumping muscle of the American locust (Schistocerca americana)
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Ontogenetic changes in citrate synthase and lactate dehydrogenase activity in the jumping muscle of the American locust (Schistocerca americana)

机译:美国蝗虫跳跃肌中柠檬酸合酶和乳酸脱氢酶活性的个体发育变化

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Intraspecific studies have repeatedly shown that muscle-specific oxidative enzyme activities scale negatively with body mass while muscle-specific glycolytic enzyme activities scale positively. However, most of these studies have not included juveniles. In this study, we examined how citrate synthase (CS, EC 2.3.3.1) and lactate dehydrogenase (LDH; EC 1.1.1.27) activity in the jumping muscle of Schistocerca americana grasshoppers varied with ontogeny across a 40-fold increase in body size. In contrast to the pattern observed when adult conspecifics are compared, we show that jumping muscle CS activity increased more than 2-fold from 2nd instars to adults, while jumping muscle LDH activity increased more than 5-fold. The increased LDH activity in older grasshoppers supports previous data that older grasshoppers have a reduced jumping endurance. The increased CS activity with age may help older grasshoppers efficiently produce aerobic ATP to bend cuticular springs for energy storage before a jump or alternatively recover from anaerobic metabolism after jumping. Metabolic changes in S. americana jumping muscle are similar to other developing taxa and highlight the importance of including juveniles within intraspecific studies. When compared to adults, juvenile locomotion may have increased selection pressure because of both greater energetic demands during growth and higher predation rates.
机译:种内研究反复表明,肌肉特异性氧化酶活性与体重呈负相关,而肌肉特异性糖酵解酶活性呈正相关。但是,这些研究大多数都没有包括青少年。在这项研究中,我们研究了美国血吸虫蚱s跳跃肌中柠檬酸合酶(CS,EC 2.3.3.1)和乳酸脱氢酶(LDH; EC 1.1.1.27)的活性随个体发育的变化,其体型增加了40倍。与比较成人同种时观察到的模式相反,我们显示从第二龄到成年成年跳跃肌CS活性增加超过2倍,而跳跃成肌LDH活性增加超过5倍。老年蝗虫中LDH活性的增加支持了以前的数据,即老年蝗虫的跳跃耐力降低。随着年龄的增长,CS活性的增加可能有助于年长的蚱efficiently有效地产生需氧ATP,从而在跳跃前弯曲表皮弹簧以储存能量,或者在跳跃后从厌氧代谢中恢复。美国链球菌跳跃肌的代谢变化与其他发育中的类群相似,并突出说明了将幼体纳入种内研究的重要性。与成年人相比,青少年运动可能会增加选择压力,因为生长过程中对能量的需求更大,而捕食率也更高。

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