...
首页> 外文期刊>The Journal of Experimental Biology >Metabolic influences of fiber size in aerobic and anaerobic locomotor muscles of the blue crab, Callinectes sapidus
【24h】

Metabolic influences of fiber size in aerobic and anaerobic locomotor muscles of the blue crab, Callinectes sapidus

机译:蓝蟹Callinectes sapidus有氧和无氧运动肌中纤维大小的代谢影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Diameters of some white locomotor muscle fibers in the adult blue crab, Callinectes sapidus, exceed 500 gm whereas juvenile white fibers are <100 gm. It was hypothesized that aerobically dependent processes, such as metabolic recovery following burst contractions, will be significantly impeded in the large white fibers. In addition, dark aerobic fibers of adults, which rely on aerobic metabolism for both contraction and recovery, grow as large as the white fibers. These large aerobic fibers are subdivided, however, thus decreasing the effective diameter of each metabolic functional unit and enabling aerobic contraction. The two goals of this study were: (1) to characterize the development of subdivisions in the dark levator muscle fibers and (2) to monitor postcontractile metabolism as a function of fiber size in aerobic and anaerobic levator muscles. Dark levator muscle fibers from crabs ranging from <0.1 g to >190 g were examined with transmission electron microscopy to determine the density of mitochondria and subdivision diameters. Across all size classes, there was a constant mitochondrial fractional area (25% of the total subdivision area) and subdivision size (mean diameter of 36.5 +/- 2.7 mum). Thus, blue crab dark levator fibers are unusual in having metabolic functional units (subdivisions) that do not increase in size during development while the contractile functional units (fibers) grow hypertrophically. The body mass scaling of postcontractile lactate dynamics was monitored during recovery from anaerobic, burst exercise in white and dark muscle, and in hemolymph. There were no differences among size classes in lactate accumulation during exercise in either muscle. However, in white fibers from large crabs, lactate continued to increase after exercise, and lactate removal from tissues required a much longer period of time relative to smaller crabs. Differences in lactate removal among size classes were less pronounced in dark fibers, and post-contractile lactate accumulation was significantly higher in white than in dark fibers from large animals. These data suggest that the large white fibers invoke anaerobic metabolism following contraction to accelerate certain phases of metabolic recovery that otherwise would be overly slow. This implies that, in addition to the typical mass-specific decrease in oxidative capacity that accompanies increases in animal mass, aerobic metabolic processes become increasingly limited by surface area to volume and intracellular diffusion constraints in developing white muscle fibers.
机译:成年蓝蟹Callinectes sapidus中一些白色运动肌纤维的直径超过500 gm,而少年白色纤维的直径小于100 gm。据推测,在大的白色纤维中,需氧依赖的过程(如爆发性收缩后的代谢恢复)将受到显着阻碍。另外,依赖于有氧代谢进行收缩和恢复的成年人的深色有氧纤维的生长与白色纤维一样大。但是,将这些大的需氧纤维细分了,因此减小了每个代谢功能单元的有效直径并实现了需氧收缩。这项研究的两个目标是:(1)表征深色提肌肌肉细分的发展;(2)监测有氧和无氧提肌肌肉收缩后代谢与纤维大小的关系。用透射电子显微镜检查了蟹类<0.1 g至> 190 g的深色提肌肌纤维,以确定线粒体的密度和细分直径。在所有尺寸类别中,线粒体的分数面积(总细分面积的25%)和细分尺寸(平均直径36.5 +/- 2.7微米)恒定。因此,蓝蟹暗提肌纤维的代谢功能单元(细分)在发育过程中尺寸不会增加,而收缩功能单元(纤维)则肥大生长,因此是不寻常的。在白色和深色肌肉以及血淋巴的无氧,爆发性运动恢复过程中,监测收缩后乳酸动力学的体重变化。在任何一块肌肉的运动过程中,乳酸积累的大小等级之间没有差异。但是,在大螃蟹的白色纤维中,运动后乳酸继续增加,相对于较小的螃蟹,从组织中去除乳酸需要更长的时间。在深色纤维中,不同尺寸类别的乳酸清除率差异不明显,而收缩后的乳酸积累在白色中要比大型动物的深色纤维高。这些数据表明,大的白色纤维在收缩后会引起厌氧代谢,从而加速代谢恢复的某些阶段,否则这些阶段将过慢。这意味着,除了伴随动物体重增加的典型的氧化能力的质量特异性下降外,有氧代谢过程越来越受表面积,体积和发育中的白肌纤维细胞内扩散限制的限制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号