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Ontogenetic changes in skeletal muscle fiber type fiber diameter and myoglobin concentration in the Northern elephant seal (Mirounga angustirostris)

机译:北象海豹(Mirounga angustirostris)骨骼肌纤维类型纤维直径和肌红蛋白浓度的个体发育变化

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摘要

Northern elephant seals (Mirounga angustirostris) (NES) are known to be deep, long-duration divers and to sustain long-repeated patterns of breath-hold, or apnea. Some phocid dives remain within the bounds of aerobic metabolism, accompanied by physiological responses inducing lung compression, bradycardia, and peripheral vasoconstriction. Current data suggest an absence of type IIb fibers in pinniped locomotory musculature. To date, no fiber type data exist for NES, a consummate deep diver. In this study, NES were biopsied in the wild. Ontogenetic changes in skeletal muscle were revealed through succinate dehydrogenase (SDH) based fiber typing. Results indicated a predominance of uniformly shaped, large type I fibers and elevated myoglobin (Mb) concentrations in the longissimus dorsi (LD) muscle of adults. No type II muscle fibers were detected in any adult sampled. This was in contrast to the juvenile animals that demonstrated type II myosin in Western Blot analysis, indicative of an ontogenetic change in skeletal muscle with maturation. These data support previous hypotheses that the absence of type II fibers indicates reliance on aerobic metabolism during dives, as well as a depressed metabolic rate and low energy locomotion. We also suggest that the lack of type IIb fibers (adults) may provide a protection against ischemia reperfusion (IR) injury in vasoconstricted peripheral skeletal muscle.
机译:众所周知,北象海豹(Mirounga angustirostris)(NES)是长期的潜水员,能够长期屏住呼吸或呼吸暂停。一些有氧潜水仍然存在于有氧代谢的范围之内,伴随着诱发肺压缩,心动过缓和周围血管收缩的生理反应。当前数据表明,在夹入式运动肌肉组织中不存在IIb型纤维。迄今为止,尚无完善的深层潜水员NES的纤维类型数据。在这项研究中,NES在野外进行了活检。通过基于琥珀酸脱氢酶(SDH)的纤维分型可以揭示骨骼肌的本体遗传学变化。结果表明,成年人的背最长肌(LD)肌肉中均匀形状的大型I型纤维占主导地位,肌红蛋白(Mb)浓度升高。在任何成人样本中均未检测到II型肌纤维。这与在Western Blot分析中显示II型肌球蛋白的幼小动物相反,这表明骨骼肌随着成熟而发生了个体发育变化。这些数据支持以前的假设,即缺乏II型纤维表明在潜水过程中依赖有氧代谢,以及代谢率下降和低能量运动。我们还建议,缺乏IIb型纤维(成人)可能为血管收缩的外周骨骼肌中的缺血再灌注(IR)损伤提供保护。

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