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首页> 外文期刊>Development >Lineage-tracing cells born in different domains along the PD axis of the developing Drosophila leg.
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Lineage-tracing cells born in different domains along the PD axis of the developing Drosophila leg.

机译:沿发育中的果蝇腿PD轴在不同域中出生的沿袭谱系细胞。

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摘要

Patterning of the developing limbs by the secreted signaling proteins Wingless, Hedgehog and Dpp takes place while the imaginal discs are growing rapidly. Cells born in regions of high ligand concentration may be displaced through growth to regions of lower ligand concentration. We have used a novel lineage-tagging method to address the reversibility of cell fate specification by morphogen gradients. We find that responses to Hedgehog and Dpp in the wing disc are readily reversible. In the leg, we find that cells readily adopt more distal fates, but do not normally shift from distal to proximal fate. However, they can do so if given a growth advantage. These results indicate that cell fate specification by morphogen gradients remains largely reversible while the imaginal discs grow. In other systems, where growth and patterning are uncoupled, nonreversible specification events or 'ratchet' effects may be of functional significance.
机译:当假想椎间盘迅速生长时,分泌的信号蛋白Wingless,Hedgehog和Dpp形成发育中的肢体。在高配体浓度区域中出生的细胞可以通过生长转移到较低配体浓度区域中。我们已经使用了一种新颖的谱系标记方法来解决吗啡梯度细胞命运规范的可逆性。我们发现,机翼盘中对刺猬和Dpp的反应很容易逆转。在腿部,我们发现细胞很容易接受更多的远端命运,但通常不会从远端命运转移到近端命运。但是,如果有增长优势,他们可以这样做。这些结果表明,当假想椎间盘生长时,由形态发生子梯度引起的细胞命运指定在很大程度上可逆。在其他系统中,生长和图案没有耦合,不可逆的规格事件或“棘齿”效应可能具有重要的功能。

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