Tissue specific reactions to positional discontinuities in the regenerating axolotl limb.

Regeneration (Oxford, England) Pub Date : 2015-06-01 Epub Date: 2015-06-16 DOI:10.1002/reg2.35
Malcolm Maden, Daima Avila, Molly Roy, Ashley W Seifert
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Abstract

We investigated cellular contributions to intercalary regenerates and 180° supernumerary limbs during axolotl limb regeneration using the cell autonomous GFP marker and exchanged blastemas between white and GFP animals. After distal blastemas were grafted to proximal levels tissues of the intercalary regenerate behaved independently with regard to the law of distal transformation; graft epidermis was replaced by stump epidermis, muscle-derived cells, blood vessels and Schwann cells of the distal blastema moved proximally to the stylopodium and cartilage and dermal cells conformed to the law. After 180° rotation, blastemas showed contributions from stump tissues which failed to alter patterning of the blastema. Supernumerary limbs were composed of stump and graft tissues and extensive contributions of stump tissues generated inversions or duplications of polarity to produce limbs of mixed handedness. Tail skeletal muscle and cardiac muscle broke the law with cells derived from these tissues exhibiting an apparent anteroposterior polarity as they migrated to the anterior side of the blastema. We attribute this behavior to the possible presence of a chemotactic factor from the wound epidermis.

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腋龙肢体再生时对位置不连续性的特定组织反应。
我们使用细胞自主的 GFP 标记研究了腋蛙肢体再生过程中细胞对闰叶再生体和 180° 上肢的贡献,并在白色和 GFP 动物之间交换胚泡。远端胚泡移植到近端后,髓间再生组织的行为独立于远端转化定律;移植表皮被残肢表皮取代,远端胚泡的肌源细胞、血管和许旺细胞向近端花柱基移动,软骨和真皮细胞符合定律。旋转 180° 后,胚泡显示出残肢组织的贡献,但残肢组织未能改变胚泡的形态。超常肢体由残肢和移植组织组成,残肢组织的广泛贡献产生极性倒置或复制,从而产生混合手性的肢体。尾部骨骼肌和心肌打破了这一规律,来自这些组织的细胞在迁移到胚泡前侧时表现出明显的前后极性。我们将这种行为归因于可能存在来自伤口表皮的趋化因子。
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