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色素细胞行为的灵活性使得皮肤图案形成具有稳健性。

Flexibility of pigment cell behavior permits the robustness of skin pattern formation.

作者信息

Sawada Risa, Aramaki Toshihiro, Kondo Shigeru

机构信息

Graduate School of Frontier Biosciences, Osaka University, Suita, Japan.

出版信息

Genes Cells. 2018 Jul;23(7):537-545. doi: 10.1111/gtc.12596. Epub 2018 May 23.

Abstract

The striped pigmentation pattern of zebrafish is determined by the interaction between pigment cells with different colors. Recent studies show the behaviors of pigment cells are substantially different according to the environment. Interestingly, the resulting patterns are almost identical, suggesting a robustness of the patterning mechanism. To know how this robustness originates, we investigated the behavior of melanophores in various environments including different developmental stages, different body positions, and different genetic backgrounds. Normally, when embryonic melanophores are excluded from the yellow stripe region in the body trunk, two different cellular behaviors are observed. Melanophores migrate to join the black stripe or disappear (die) in the position. In environments where melanophore migration was restricted, we observed that most melanophores disappeared in their position, resulting in the complete exclusion of melanophores from the yellow stripe. In environments where melanophore cell death was restricted, most melanophores migrated to join the black stripes, also resulting in complete exclusion. When both migration and cell death were restricted, melanophores remained alive in the yellow stripes. These results show that migration and cell death complement each other to achieve the exclusion of melanophores. This flexibility may be the basis of the mechanistic robustness of skin pattern formation.

摘要

斑马鱼的条纹色素沉着模式是由不同颜色的色素细胞之间的相互作用决定的。最近的研究表明,色素细胞的行为根据环境的不同而有很大差异。有趣的是,最终形成的模式几乎是相同的,这表明图案形成机制具有稳健性。为了了解这种稳健性的起源,我们研究了黑素细胞在各种环境中的行为,包括不同的发育阶段、不同的身体位置和不同的遗传背景。通常情况下,当胚胎期的黑素细胞被排除在躯干的黄色条纹区域之外时,会观察到两种不同的细胞行为。黑素细胞会迁移并加入黑色条纹,或者在该位置消失(死亡)。在黑素细胞迁移受到限制的环境中,我们观察到大多数黑素细胞在其位置消失,导致黄色条纹区域完全没有黑素细胞。在黑素细胞死亡受到限制的环境中,大多数黑素细胞迁移并加入黑色条纹,同样导致完全排除。当迁移和细胞死亡都受到限制时,黑素细胞会在黄色条纹区域存活。这些结果表明,迁移和细胞死亡相互补充,以实现黑素细胞的排除。这种灵活性可能是皮肤图案形成机制稳健性的基础。

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