首页> 外文期刊>Fish Physiology and Biochemistry >Metabolic biochemistry of cardiac muscle in three tuna species (bigeye, Thunnus obesus; yellowfin, T. albacares; and skipjack, Katsuwonus pelamis) with divergent ambient temperature and oxygen tolerances.
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Metabolic biochemistry of cardiac muscle in three tuna species (bigeye, Thunnus obesus; yellowfin, T. albacares; and skipjack, Katsuwonus pelamis) with divergent ambient temperature and oxygen tolerances.

机译:三种金枪鱼物种(大眼金枪鱼,金枪鱼,黄鳍金枪鱼和白鳍金枪鱼)的心肌代谢生物化学,其环境温度和氧气耐受性各不相同。

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Bigeye tuna (Thunnus obesus) have much greater vertical mobility than yellowfin (T. albacares) and skipjack (Katsuwonus pelamis) tunas, due to an apparent greater tolerance of the changes in ambient temperature and oxygen occurring with depth. In an attempt to identify physiological processes (e.g., effects of temperature on cardiac function) responsible for these behavioral differences, we examined enzyme activities (at 12 degrees C, 17 degrees C, and 25 degrees C) of cardiac muscle in all three species. Contrary to our expectations, we found few differences and no clear explanatory patterns in maximum enzyme activities (Vmax) or enzyme activity ratios. For example, citrate synthase (CS) activity was the same in bigeye and skipjack tunas, but ~40% lower in yellowfin tuna, whereas carnitine palmotoyltransferase (CPT) activity in skipjack tuna was approximately double that in the other two species. The ratio of CPT to pyruvate kinase (PK) activity, a measure of the tissues preference for fatty acids as metabolic substrates, was the same in bigeye and yellowfin tunas, but elevated skipjack tuna. The ratios of lactate dehydrogenase (LDH) to CS activity and of PK to CS activity (anaerobic-aerobic enzyme activity ratios - taken as measures of the tissues ability to tolerate hypoxia) were both elevated in yellowfin tuna cardiac tissue relative to the other two species. We also found no differences in temperature sensitivity (Q10 values) when comparing cardiac enzyme activities across species, nor effects of temperature on the substrate affinity (Km) of LDH. In sum, our results do not suggest any clear metabolic difference in the cardiac muscle that would explain the apparent greater tolerance of bigeye tuna to acute hypoxia and ambient temperature changes or their substantially greater vertical mobility.
机译:大眼金枪鱼(Thunnus obesus)比黄鳍金枪鱼(T. albacares)和skip鱼(Katsuwonus pelamis)金枪鱼的垂直迁移率要大得多,这是因为对环境温度和深度随深度变化的氧气的耐受性更大。为了确定造成这些行为差异的生理过程(例如温度对心脏功能的影响),我们检查了所有三种物种的心肌酶活性(分别在12摄氏度,17摄氏度和25摄氏度时)。与我们的预期相反,我们发现最大酶活度(Vmax)或酶活度比率几乎没有差异,也没有明确的解释模式。例如,大眼金枪鱼和skip鱼金枪鱼中的柠檬酸合酶(CS)活性相同,但黄鳍金枪鱼中柠檬酸合酶的活性低约40%,而whereas鱼金枪鱼中的肉碱棕榈酰转移酶(CPT)活性大约是其他两个物种的两倍。在大眼和黄鳍金枪鱼中,CPT与丙酮酸激酶(PK)活性的比率(组织对脂肪酸作为代谢底物的偏爱程度的度量)在大眼金枪鱼和黄鳍金枪鱼中相同,但skip鱼金枪鱼含量较高。相对于其他两个物种,黄鳍金枪鱼心脏组织中乳酸脱氢酶(LDH)与CS活性的比率以及PK与CS活性的比率(无氧-好氧酶活性比-作为组织耐受缺氧的量度) 。当比较跨物种的心脏酶活性时,我们还没有发现温度敏感性(Q10值)的差异,也没有温度对LDH底物亲和力(Km)的影响。总而言之,我们的结果并未表明心肌中有任何明显的代谢差异,这可以解释大眼金枪鱼对急性缺氧和环境温度变化的明显更大的耐受性,或者它们的垂直运动性明显更高。

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