Integrated transcriptomic analysis reveals evolutionary and developmental characteristics of tendon ossification in teleost.

IF 4.4 1区 生物学 Q1 BIOLOGY BMC Biology Pub Date : 2024-12-31 DOI:10.1186/s12915-024-02103-9
Xu-Dong Wang, Fei-Long Shi, Jia-Jia Zhou, Zheng-Yu Xiao, Tan Tu, Xue-Mei Xiong, Chun-Hong Nie, Shi-Ming Wan, Ze-Xia Gao
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Abstract

Background: Intermuscular bones (IBs) are segmental intramembranous ossifications located within myosepta. They share similarities with tendon ossification, a form of heterotopic ossification (HO). The mechanisms underlying IB formation remain incompletely understood.

Results: In this study, we systematically analyzed transcriptome data across multiple tissues, species, time points, and resolutions in teleosts. First, we identified IB-specific expression genes using the tau index method. Through cross-species comparisons of the tendon development process, we discovered that candidate genes were primarily enriched in extracellular matrix organization, ossification, regulation of angiogenesis, and other related processes. We also revealed that some of these candidate genes are abnormally expressed in runx2b-/- zebrafish, which lack IBs. To clarify the trajectory of cell differentiation during IB formation, we demonstrated that myoseptal stem cells differentiate into osteoblasts, fibroblasts, and tenocytes in runx2b+/+ zebrafish. However, in runx2b-/- zebrafish, the differentiation of myoseptal stem cell into osteoblast was inhibited, while differentiation into clec3bb + tenocyte and fibroblast was enhanced. Additionally, runx2b deficiency led to the upregulation of clec3bb expression in the clec3bb + tenocyte cluster. Notably, a compensatory effect was observed in cell differentiation and gene expression in runx2b-/- zebrafish, suggesting that runx2b and the candidate genes, such as clec3bb, were involved in the gene network of IB development.

Conclusions: The results elucidate cell differentiation process during tendon ossification in teleosts and identify the key factor clec3bb involved in this process. These findings provide a foundation for understanding tendon ossification in teleosts and for further research on tendon ossification in mammals.

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综合转录组学分析揭示了硬骨鱼肌腱骨化的进化和发育特征。
背景:肌间骨(IBs)是位于肌隔内的节段性膜内骨化。它们与肌腱骨化有相似之处,这是一种异位骨化(HO)。IB形成的机制尚不完全清楚。结果:在这项研究中,我们系统地分析了硬骨鱼的多个组织、物种、时间点和分辨率的转录组数据。首先,我们使用tau指数方法鉴定了ib特异性表达基因。通过跨物种肌腱发育过程的比较,我们发现候选基因主要富集于细胞外基质组织、骨化、血管生成调控和其他相关过程。我们还发现其中一些候选基因在缺乏IBs的runx2b-/-斑马鱼中异常表达。为了阐明IB形成过程中细胞分化的轨迹,我们证明了在runx2b+/+斑马鱼中,肌隔干细胞分化为成骨细胞、成纤维细胞和腱细胞。然而,在runx2b-/-斑马鱼中,肌隔干细胞向成骨细胞的分化受到抑制,而向clec3bb +腱细胞和成纤维细胞的分化增强。此外,runx2b缺乏导致clec3bb +细胞簇中clec3bb表达上调。值得注意的是,在runx2b-/-斑马鱼的细胞分化和基因表达中观察到代偿效应,这表明runx2b和候选基因,如clec3bb,参与了IB发育的基因网络。结论:研究结果阐明了硬骨鱼肌腱骨化过程中的细胞分化过程,并确定了参与该过程的关键因子clec3bb。这些发现为了解硬骨鱼肌腱骨化和进一步研究哺乳动物肌腱骨化奠定了基础。
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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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