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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Avian Pigment Pattern Formation: Developmental Control of Macro- (Across the Body) and Micro- (Within a Feather) Level of Pigment Patterns
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Avian Pigment Pattern Formation: Developmental Control of Macro- (Across the Body) and Micro- (Within a Feather) Level of Pigment Patterns

机译:禽类颜料图案形成:宏观(穿过身体)的发育控制和微米(羽毛内)颜料图案的水平

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Animal color patterns are of interest to many fields, such as developmental biology, evolutionary biology, ethology, mathematical biology, bio-mimetics, etc. The skin provides easy access to experimentation and analysis enabling the developmental pigment patterning process to be analyzed at the cellular and molecular level. Studies in animals with distinct pigment patterns (such as zebrafish, horse, feline, etc.) have revealed some genetic information underlying color pattern formation. Yet, how the complex pigment patterns in diverse avian species are established remains an open question. Here we summarize recent progress. Avian plumage shows color patterns occurring at different spatial levels. The two main levels are macro- (across the body) and micro- (within a feather) pigment patterns. At the cellular level, colors are mainly produced by melanocytes generating eumelanin (black) and pheomelanin (yellow, orange). These melanin-based patterns are regulated by melanocyte migration, differentiation, cell death and/or interaction with neighboring skin cells. In addition, non-melanin chemical pigments and structural colors add more colors to the available palette in different cell types or skin regions. We discuss classic and recent tissue transplantation experiments that explore the avian pigment patterning process and some potential molecular mechanisms. We find color patterns can be controlled autonomously by melanocytes but also non-autonomously by dermal cells. Complex plumage color patterns are generated by the combination of these multi-scale patterning mechanisms. These interactions can be further modulated by environmental factors such as sex hormones, which generate striking sexual dimorphic colors in avian integuments and can also be influenced by seasons and aging.
机译:动物颜色模式对许多领域感兴趣,例如发育生物学,进化生物学,道德学,数学生物学,生物模拟物等。皮肤可以轻松访问实验和分析,从而能够在细胞上分析发育颜料图案化过程和分子水平。具有不同颜料图案(如斑马鱼,马,猫等)的动物的研究已经揭示了一些遗传信息潜在的颜色模式形成。然而,如何建立各种禽类种类的复杂颜料模式仍然是一个开放的问题。在这里,我们总结了最近的进展。禽羽毛显示在不同空间水平上发生的颜色模式。两个主要水平是宏观(穿过身体)和微观(在羽毛内)颜料图案。在细胞水平,颜色主要由Melanocytes产生eumelanin(黑色)和噬菌体(黄色,橙色)。这些基于黑色素的模式由黑素细胞迁移,分化,细胞死亡和/或与相邻皮肤细胞的相互作用调节。此外,非黑色素化学颜料和结构颜色在不同细胞类型或皮肤区域的可用调色板中增加了更多的颜色。我们讨论经典和最近的组织移植实验,探讨禽颜料图案化工艺和一些潜在的分子机制。我们发现颜色模式可以由黑色细胞自主控制,但也可以由皮肤细胞非自主控制。复杂的羽毛颜色图案由这些多尺度图案化机构的组合产生。这些相互作用可以通过诸如性激素等环境因素进行进一步调节,这些因素在禽流表中产生醒目的性二态颜色,也可以受到季节和老化的影响。

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