Structure, function and formation of the amniote skin pattern

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Carole Desmarquet-Trin Dinh, Marie Manceau
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Abstract

From feather and hair dotted arrays to pigmented stripes and spots, the spatial distribution of skin appendages and colouration often forms visible ornaments crucial for fitness in the coat of birds and mammals. These geometrical motifs are extremely diverse in nature. Yet, phenotypic surveys evidenced common themes in variation: the orientation, appendage-specificity or pigmentation of a given region may be conserved across groups or species. Here, we review naturalist observations of natural variation in the anatomy and ecological function of the skin pattern in amniotes. We then describe several decades of genetics, mathematical modelling and experimental embryology work aiming at understanding the molecular and morphogenetic mechanisms responsible for pattern formation. We discuss how these studies provided evidence that the morphological trends and differences representative of the phenotypic landscape of skin patterns in wild amniote species is rooted in the mechanisms controlling the production of distinct compartments in the embryonic skin.

Abstract Image

羊膜动物皮纹的结构、功能和形成。
从羽毛和毛发的点阵到色素条纹和斑点,皮肤附属物和色素的空间分布往往形成可见的装饰,对鸟类和哺乳动物的体质至关重要。这些几何图案在自然界中极其多样。然而,表型调查证明了变异的共同主题:特定区域的方向、附属物特异性或色素沉着可能在不同群体或物种之间保持不变。在此,我们回顾了博物学家对羊膜动物皮纹解剖和生态功能自然变异的观察。然后,我们描述了数十年来遗传学、数学建模和实验胚胎学方面的工作,这些工作的目的是了解皮肤花纹形成的分子和形态发生机制。我们讨论了这些研究如何提供证据,证明代表野生羊膜动物皮肤图案表型景观的形态趋势和差异植根于控制胚胎皮肤中不同分区产生的机制。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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