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Muscle fine structure reflects ecotype in two nototheniids

机译:肌肉的精细结构反映了两个猪齿亚科的生态型

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The fine structure of swimming (pectoral) and myotomal (axial) skeletal muscle and myocardium of two species of Antarctic nototheniid fishes were studied by electron microscopy, comparing the cryopelagic Pagothenia borchgrevinki and the benthic Trematomus bernacchii. Mean fibre size varied by a factor of four among muscles within each species and may have reflected the locomotory power available, being larger in pectoral oxidative (red) and axial glycolytic (white) muscle of P. borchgrevinki. Both species use labriform locomotion, and the more active P. borchgrevinki had a greater capillary supply, expressed as a capillary to fibre ratio, than T. bernacchii to both red (3.48 +/- 0.36 v. 1.63 +/- 0.14, mean +/- s.e.; P < 0.01) and white (2.70 +/- 0.20 v. 1.53 +/- 0.18, mean +/- s.e.; P < 0.01) regions of the pectoral musculature. The greater aerobic scope of P. borchgrevinki was strikingly demonstrated in the higher mitochondrial content of all skeletal muscle types sampled, and the ventricular myocardium (0.269 +/- 0.011 v. 0.255 +/- 0.012 mean +/- s.e.; P < 0.05). Minor differences were found in other elements of fibre composition, with the exception of a five-fold greater lipid content in pectoral red fibres of P. borchgrevinki(0.074 +/- 0.014 mean +/- s.e.)v. T. bernacchii(0.010 +/- 0.003; P < 0.05). Differences in muscle fine structure among species clearly reflected differences in their ecotype.
机译:用电子显微镜研究了两种南极非猪齿鱼类的游泳(胸肌)和肌体(轴向)骨骼肌和心肌的精细结构,比较了低温弹性的Pagothenia borchgrevinki和底栖的Trenatomus bernacchii。在每种物种的肌肉中,平均纤维大小变化了四倍,并且可能已经反映了可用的运动能力,在波氏假单胞菌的胸部氧化(红色)和轴向糖酵解(白色)肌肉中更大。两种物种都使用唇形运动,并且比伯纳希红球菌对两种红色都更具活性(以毛纤维对纤维的比率表示),活性更高的波氏疟原虫的毛细血管供应量更大(3.48 +/- 0.36 v。1.63 +/- 0.14,均值+ -/ se; P <0.01)和胸肌的白色(2.70 +/- 0.20 v。1.53 +/- 0.18,平均+/- se; P <0.01)区。在所有采样的骨骼肌和心室心肌中,较高的线粒体含量证明了P. borchgrevinki的更大的有氧运动范围(0.269 +/- 0.011 v。0.255 +/- 0.012平均+/- se; P <0.05) 。在纤维成分的其他元素中发现微小差异,除了波氏假单胞菌的胸膜红色纤维中的脂质含量高五倍(0.074 +/- 0.014平均+/- s.e.)v。伯氏杆菌(0.010 +/- 0.003; P <0.05)。物种之间肌肉细微结构的差异清楚地反映了其生态型的差异。

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