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Immunohistochemical fiber typing, ultrastructure, and morphometry of harbor seal skeletal muscles.

机译:斑海豹骨骼肌的免疫组织化学纤维分型,超微结构和形态测定。

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摘要

There is strong evidence that the skeletal muscles of pinnipeds are adapted for an aerobic, lipid-based metabolism under the hypoxic conditions associated with breath-hold diving. However, regional variations in mitochondrial density are unknown, and the few fiber typing studies performed on pinniped skeletal muscles are not consistent with an aerobic physiological profile. Thus, the objectives of this study were to (1) reexamine the fiber type distribution throughout the primary locomotory muscles of the harbor seal, and (2) to better understand the density and distribution of mitochondria in the locomotory muscles. Multiple samples from transverse sections of the epaxial muscles and a single sample of the pectoralis muscle of wild harbor seals were analyzed using immunohistochemical fiber typing and electron microscopy. Fiber typing results indicated that harbor seal epaxial muscles are composed of 47.4% type I (slow twitch, oxidative) fibers and 52.8%, IIa (fast twitch, oxidative) fibers. No fast twitch, glycolytic (type IIb) fibers were detected in the epaxial muscles or the pectoralis muscle. Mean volume density of mitochondria [Vv(mt,f)] was 5.6%, which is elevated over what would be predicted for a terrestrial mammal of similar mass. The elevated Vv(mt,f) had a high proportion of intermyofibrillar mitochondria, a trait not normally found in the muscles of terrestrial mammals with elevated Vv(mt,f). These results provide further evidence that the elevated mitochondrial volume density in pinniped muscle decreases the oxygen diffusion distance between myoglobin and mitochondria to facilitate aerobic respiration in working muscles. In addition, analyses of heterogeneity revealed that the regions of the epaxial muscles that were located deep within the muscle showed a significantly higher Vv(mt,f) relative to those regions that were superficially-located. In contrast, there was no significant heterogeneity of fiber type detected in either plane of the epaxial muscles. Thus, there was a fine-scale pattern of spatial heterogeneity of Vv(mt,f) within the epaxial muscles that does not manifest in fiber type distribution, indicating that the fibers have similar oxidative capacities.
机译:有充分的证据表明,在与屏气潜水相关的低氧条件下,pin鱼的骨骼肌适合进行基于需氧的脂质代谢。然而,线粒体密度的区域变化是未知的,并且在夹捏的骨骼肌上进行的少数纤维分型研究与有氧生理特征不一致。因此,本研究的目的是(1)重新检查斑海豹主要运动肌的纤维类型分布,以及(2)更好地了解运动肌中线粒体的密度和分布。使用免疫组织化学纤维分型和电子显微镜分析了野生海豹的横断肌横断面的多个样本和胸大肌的单个样本。纤维分型的结果表明,斑海豹轴突肌由47.4%的I型(慢肌,氧化)纤维和52.8%的IIa(快肌,氧化)纤维组成。在外延肌或胸大肌中未检测到快速抽搐,糖酵解(IIb型)纤维。线粒体的平均体积密度[Vv(mt,f)]为5.6%,高于类似质量的陆生哺乳动物的预测密度。 Vv(mt,f)升高具有高比例的肌原纤维间线粒体,这是在Vv(mt,f)升高的陆地哺乳动物的肌肉中通常不发现的特征。这些结果提供了进一步的证据,表明夹捏肌肉中线粒体体积密度的升高降低了肌红蛋白和线粒体之间的氧扩散距离,从而促进了工作肌肉的有氧呼吸。另外,对异质性的分析表明,相对于表面位置的那些区域,位于肌肉内部较深的轴向肌肉区域显示出明显更高的Vv(mt,f)。相反,在后伸肌的任一平面上均未检测到明显的纤维类型异质性。因此,在外肌中存在一个Vv(mt,f)空间异质性的精细尺度模式,这种模式在纤维类型分布中没有表现出来,表明纤维具有相似的氧化能力。

著录项

  • 作者

    Watson, Rebecca Reiko.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Biology Animal Physiology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 80 p.
  • 总页数 80
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生理学;
  • 关键词

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