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首页> 外文期刊>Developmental biology >Lineage tracing of col10a1 cells identifies distinct progenitor populations for osteoblasts and joint cells in the regenerating fin of medaka (Oryzias latipes)
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Lineage tracing of col10a1 cells identifies distinct progenitor populations for osteoblasts and joint cells in the regenerating fin of medaka (Oryzias latipes)

机译:COL10A1细胞的谱系追踪鉴定了Medaka再生鳍中的成骨细胞和关节细胞的不同祖细胞(Oryzias LaTipes)

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The caudal fin of teleost fish regenerates fully within two weeks of amputation. While various cell lineages have been identified and characterized in the regenerating fin, the origin of bone cells remains debated. Here, we analysed collagen10a1 (col10a1) expressing cells in the regenerating fin of the medaka (Oryzias latipes) and tested whether they represent an alternative progenitor source for regenerating osteoblasts. Under normal conditions, col10a1 cells are positioned along fin ray segments and in intersegmental regions. Lineage tracing in the amputated fin revealed that col10a1 cells from the stump contribute to the regenerating bony fin rays. However, ablation of col10a1 cells did not abolish fin regeneration suggesting that col10a1 expressing osteoblast progenitors are dispensable for regeneration. Intriguingly, however, after ablation of osterix (osx)/sp7-col10a1 double-positive osteoblasts, col10a1 cells exclusively gave rise to joint cells in the intersegmental region thus identifying a pool of lineage-restricted joint progenitor cells. To identify additional sources for regenerating osteoblasts, we performed clonal lineage analysis. Our data provide the first evidence that after ablation of mature osteoblasts in medaka, transdifferentiation does not account for de novo osteoblast generation. Instead, our findings suggest the presence of lineage restricted progenitor pools in medaka, similar to the situation in zebrafish. After osteoblast ablation, these pools become activated and give rise to fin ray osteoblasts and intersegmental joint cells during regeneration. In summary, we conclude that col10a1-positive cells do not represent an exclusive source for osteoblasts but are progenitors of joint cells in the regenerating fin.
机译:Textost鱼的尾鳍完全在截肢两周内完全再生。虽然已经鉴定出各种细胞谱系并在再生翅片中表征,但是骨细胞的起源仍然争论。这里,我们分析了在Medaka(Oryzias Lipipes)的再生翅片中表达细胞的胶原10A1(COL10A1)并测试了它们是否代表再生成骨细胞的替代祖源。在正常条件下,COL10A1细胞沿鳍射线段和位子区域定位。截肢翅片中的谱系追踪显示,来自树桩的Col10a1细胞有助于再生骨鳍射线。然而,COL10A1细胞的消融并未消除翅片再生,表明表达表达成骨细胞祖细胞的COL10A1可用于再生。然而,有趣的是,在消融Osterix(OSX)/ SP7-COL10A1的双阳性成骨细胞之后,COL10A1细胞专门地产生了基于内部区域中的关节细胞,从而识别血管池的血管池细胞。为了确定再生成骨细胞的额外来源,我们进行了克隆谱系分析。我们的数据提供了第一种证据,在消融在Medaka的成熟成分细胞后,转化性不会占De Novo成骨细胞产生。相反,我们的研究结果表明了Medaka的血统限制祖池的存在,类似于斑马鱼的情况。在成骨细胞消融之后,这些池在再生期间被激活并产生鳍射线成骨细胞和偏孔关节细胞。总之,我们得出结论,COL10A1阳性细胞不代表成骨细胞的专用来源,而是是再生翅片中的关节细胞的祖细胞。

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