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首页> 外文期刊>The Journal of Experimental Biology >Latitudinal variation in the abundance and oxidative capacities of muscle mitochondria in perciform fishes
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Latitudinal variation in the abundance and oxidative capacities of muscle mitochondria in perciform fishes

机译:鲈鱼鱼类肌肉线粒体的丰度和氧化能力的纬度变化

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The abundance, distribution and oxidative capacities of mitochondria have been investigated in the red pectoral fin adductor muscles of fish (Order Perciformes) that use a predominantly labriform style of swimming, Mediterranean Sea species from the families Labridae, Serranidae, Sparidae and Antarctic Nototheniidae and non-Antarctic Nototheniidae and Channichthyidae were studied, Sub-Antarctic species from the Beagle Channel, Tierra del Fuego, included the pelagic haemoglobin-less icefish (Champsocephalus esox) and the robalo (Eleginops maclovinus), which occurs as far north as 35 degrees S. In Champsocephalus esox, the mitochondrial volume density of red muscle was 0.51 and mitochondrial cristae surface density (43.9 mu m(2) mu m(-3)) was higher than reported for Antarctic icefishes, In the red-blooded, active pelagic or semi-pelagic species, mitochondrial volume density was within the range 0.27-0.33 regardless of habitat temperature, Amongst less active demersal species, mitochondrial volume density ranged from 0.29-0.33 in polar species to 0.08-0.13 in Mediterranean species, In Antarctic species and Champsocephalus esox, myofibrils occurred in ribbons or clusters one fibril thick entirely surrounded by mitochondria, The volume density of intracellular lipid droplets was not correlated with activity patterns or habitat temperature, In a comparison of Eleginops maclovinus caught in summer (approximately 10 degrees C) and winter (approximately 4 degrees C), mitochondrial volume density did not differ, whereas the surface density of mitochondrial clusters was higher in summer fish, The temperature-dependence of the state 3 respiration rate of isolated mitochondria with pyruvate as substrate was described by a single quadratic relationship for all species, indicating no significant up-regulation of the maximum rate of oxygen uptake per milligram mitochondrial protein in Antarctic species, Our results support the conclusion that increasing the volume and surface density of mitochondrial clusters is the primary mechanism for enhancing the aerobic capacity of muscle in cold-water fish. [References: 55]
机译:鱼类的红色胸鳍内收肌(Order Perciformes)的线粒体含量,分布和氧化能力已得到研究,这些鱼类主要使用呈唇形的游泳形式,来自Labridae,Serranidae,Sparidae和Antarctic Nototheniidae科的地中海物种。 -研究了南极Nototheniidae和Channichthyidae,来自南比格犬道(Beagle Channel)的南极亚种,包括上浮性无血红蛋白的冰鱼(Champsocephalus esox)和robalo(Eleginops maclovinus),它们向北延伸35度。在法国南方蛇鱼中,红色肌肉的线粒体体积密度为0.51,线粒体cr表面密度(43.9μm(2)μm(-3))高于南极冰鱼的报道,在红色,活跃的中上层或半水中上层物种,线粒体体积密度在0.27-0.33范围内,与栖息地温度无关,在活动性较差的水下物种中,线粒体极体密度范围从极地物种的0.29-0.33到地中海物种的0.08-0.13,在南极物种和champsocephalus esox中,肌原纤维以带状或簇状出现,纤丝完全被线粒体包围,细胞内脂质滴的体积密度无关根据活动模式或栖息地温度,在夏季(约10摄氏度)和冬季(约4摄氏度)捕获的线虫的比较中,线粒体的体积密度没有差异,而夏季鱼中的线粒体簇的表面密度较高,以丙酮酸为底物的线粒体状态3呼吸速率的温度依赖性通过所有物种的单一二次关系描述,表明南极物种中每毫克线粒体蛋白的最大摄氧速率没有明显上调,我们的结果支持以下结论:增加体积和表面密度线粒体簇的大小是增强冷水鱼肌肉有氧能力的主要机制。 [参考:55]

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