Comparison of muscle structure and transcriptome analysis of eyed-side muscle and blind-side muscle in Cynoglossussemilaevis (Osteichthyes, Cynoglossidae).

IF 1.3 3区 生物学 Q2 ZOOLOGY ZooKeys Pub Date : 2025-03-06 eCollection Date: 2025-01-01 DOI:10.3897/zookeys.1230.139837
Zhenming Lü, Yuzhen Wang, Jing Yu, Yijing Yang, An Xu, Li Gong, Jing Liu, Fenghui Li, Liqin Liu
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Abstract

Cynoglossussemilaevis (Osteichthyes, Cynoglossidae) is one of the most significant commercial marine fish species in China and has evolved a specialized asymmetrical body axis. In addition, C.semilaevis displays different muscle thickness between the eyed side and the blind side. However, the mechanisms underlying the muscle development difference between the two sides in C.semilaevis are unclear. In this study, we generated the first comparative investigation on the structure of muscle cells, and transcriptome analysis between the eyed-side muscle (ESM) and blind-side muscle (BSM) in C.semilaevis. Histological assays showed the obvious mosaic appearance of muscles on both the eyed side and blind side. However, the number of new muscle cells in ESM was significantly more than that in the BSM group. Comparative analyses of RNA-seq data showed that 1177 differentially expressed genes (DEGs) were identified between ESM and BSM groups, including 291 up-regulated and 886 down-regulated genes. The expression levels of myosin family genes (actin, myosin-binding protein C, titin, troponin, tnnil, and astrotactin-2) were significantly higher in ESM and might be a candidate regulator of muscle filament assembly in C.semilaevis. Murine double minute 2 (Mdm2) and cyclin A2 (ccna2) were also up-regulated in ESM, which indicates that the muscle development difference between ESM and BSM in C.semilaevis might be owing to the variation in myofibroblast proliferation. In addition, KEGG pathway enrichment analyses suggested that the glycolysis/gluconeogenesis pathway may be involved in the muscle development of C.semilaevis. Taken together, this study may provide useful information to understand the molecular mechanism of muscle development in flatfishes.

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骨鱼科(Cynoglossussemilaevis)的肌肉结构Comparison及眼侧肌和盲侧肌的转录组分析。
棘鱼(Cynoglossussemilaevis)是中国最重要的商业海洋鱼类之一,已进化出特殊的不对称体轴。此外,眼侧和盲侧半盲眼的肌肉厚度也不同。然而,半乳弧菌两侧肌肉发育差异的机制尚不清楚。在这项研究中,我们首次对半盲蝽的眼侧肌(ESM)和盲侧肌(BSM)的肌肉细胞结构进行了比较研究,并进行了转录组分析。组织学检查显示,眼侧和盲侧均有明显的肌肉镶嵌现象。然而,ESM组的新肌细胞数量明显多于BSM组。RNA-seq数据对比分析显示,ESM组与BSM组共鉴定出1177个差异表达基因(deg),其中上调基因291个,下调基因886个。肌凝蛋白家族基因(肌动蛋白、肌凝蛋白结合蛋白C、titin、肌钙蛋白、tnnil和astroactin -2)在ESM中的表达水平显著升高,可能是半青霉肌丝组装的候选调节因子。小鼠双分钟2 (Mdm2)和细胞周期蛋白A2 (ccna2)也在ESM中表达上调,这表明半青鼠ESM与BSM的肌肉发育差异可能是由于肌成纤维细胞增殖的差异。此外,KEGG通路富集分析表明,糖酵解/糖异生通路可能参与了半乳弧菌的肌肉发育。综上所述,本研究可能为理解比目鱼肌肉发育的分子机制提供有用的信息。
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
ZooKeys
ZooKeys 生物-动物学
CiteScore
2.70
自引率
15.40%
发文量
400
审稿时长
3 months
期刊介绍: ZooKeys is a peer-reviewed, open-access, online and print, rapidly produced journal launched to support free exchange of ideas and information in systematic zoology, phylogeny and biogeography. All papers can be freely copied, downloaded, printed and distributed at no charge. Authors and readers are thus encouraged to post the pdf files of published papers on homepages or elsewhere to expedite distribution. There is no charge for color.
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