Spatially ordered recruitment of fast muscles in accordance with movement strengths in larval zebrafish.

IF 1.7 3区 生物学 Q2 ZOOLOGY
Sayaka Shimizu, Taisei Katayama, Nozomi Nishiumi, Masashi Tanimoto, Yukiko Kimura, Shin-Ichi Higashijima
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引用次数: 0

Abstract

In vertebrates, skeletal muscle comprises fast and slow fibers. Slow and fast muscle cells in fish are spatially segregated; slow muscle cells are located only in a superficial region, and comprise a small fraction of the total muscle cell mass. Slow muscles support low-speed, low-force movements, while fast muscles are responsible for high-speed, high-force movements. However, speed and strength of movement are not binary states, but rather fall on a continuum. This raises the question of whether any recruitment patterns exist within fast muscles, which constitute the majority of muscle cell mass. In the present study, we investigated activation patterns of trunk fast muscles during movements of varying speeds and strengths using larval zebrafish. We employed two complementary methods: calcium imaging and electrophysiology. The results obtained from both methods supported the conclusion that there are spatially-ordered recruitment patterns in fast muscle cells. During weaker/slower movements, only the lateral portion of fast muscle cells is recruited. As the speed or strength of the movements increases, more fast muscle cells are recruited in a spatially-ordered manner, progressively from lateral to medial. We also conducted anatomical studies to examine muscle fiber size. The results of those experiments indicated that muscle fiber size increases systematically from lateral to medial. Therefore, the spatially ordered recruitment of fast muscle fibers, progressing from lateral to medial, correlates with an increase in fiber size. These findings provide significant insights into the organization and function of fast muscles in larval zebrafish, illustrating how spatial recruitment and fiber size interact to optimize movement performance.

斑马鱼幼鱼快速肌肉的空间有序招募与运动强度一致。
在脊椎动物中,骨骼肌由快纤维和慢纤维组成。鱼类的慢肌细胞和快肌细胞在空间上是分离的;慢肌细胞仅位于表面区域,占总肌细胞质量的一小部分。慢肌肉支持低速、低力量的运动,而快肌肉负责高速、高力量的运动。然而,运动的速度和力量并不是二元状态,而是一个连续体。这就提出了一个问题,即快速肌中是否存在任何招募模式,快速肌构成了大部分肌肉细胞群。在本研究中,我们研究了斑马鱼幼体在不同速度和力量的运动过程中躯干快肌的激活模式。我们采用钙显像和电生理两种互补的方法。两种方法得到的结果都支持了快速肌细胞中存在空间有序募集模式的结论。在较弱/较慢的运动中,只有快速肌细胞的外侧部分被招募。随着运动速度或强度的增加,更多的快速肌肉细胞以空间有序的方式被招募,逐渐从外侧到内侧。我们还进行了解剖学研究,以检查肌纤维的大小。实验结果表明,肌肉纤维大小从外侧到内侧有系统地增加。因此,快速肌纤维的空间有序募集,从外侧到内侧,与纤维大小的增加有关。这些发现为了解斑马鱼幼虫快速肌肉的组织和功能提供了重要的见解,说明了空间招募和纤维大小如何相互作用以优化运动性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Zoological Letters
Zoological Letters Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
3.60
自引率
0.00%
发文量
12
审稿时长
10 weeks
期刊介绍: Zoological Letters is an open access journal that publishes new and important findings in the zoological sciences. As a sister journal to Zoological Science, Zoological Letters covers a wide range of basic fields of zoology, from taxonomy to bioinformatics. We also welcome submissions of paleontology reports as part of our effort to contribute to the development of new perspectives in evolutionary zoology. Our goal is to serve as a global publishing forum for fundamental researchers in all fields of zoology.
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