首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Trunk dental tissue evolved independently from underlying dermal bony plates but is associated with surface bones in living odontode-bearing catfish
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Trunk dental tissue evolved independently from underlying dermal bony plates but is associated with surface bones in living odontode-bearing catfish

机译:躯干牙齿组织独立于下面的真皮骨板而演化但与带有齿状齿的cat鱼的表面骨骼有关

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摘要

Although oral dental tissue is a vertebrate attribute, trunk dental tissue evolved in several extinct vertebrate lineages but is rare among living species. The question of which processes trigger dental-tissue formation in the trunk remains open, and would shed light on odontogenesis evolution. Extra-oral dental structures (odontodes) in the trunk are associated with underlying dermal bony plates, leading us to ask whether the formation of trunk bony plates is necessary for trunk odontodes to emerge. To address this question, we focus on Loricarioidei: an extant, highly diverse group of catfish whose species all have odontodes. We examined the location and cover of odontodes and trunk dermal bony plates for all six loricarioid families and 17 non-loricarioid catfish families for comparison. We inferred the phylogeny of Loricarioidei using a new 10-gene dataset, eight time-calibration points, and noise-reduction techniques. Based on this phylogeny, we reconstructed the ancestral states of odontode and bony plate cover, and find that trunk odontodes emerged before dermal bony plates in Loricarioidei. Yet we discovered that when bony plates are absent, other surface bones are always associated with odontodes, suggesting a link between osteogenic and odontogenic developmental pathways, and indicating a remarkable trunk odontogenic potential in Loricarioidei.
机译:尽管口腔牙齿组织是脊椎动物的属性,但躯干牙齿组织在几种已灭绝的脊椎动物谱系中进化,但在生物物种中很少见。哪个过程触发了躯干中牙齿组织的形成的问题仍然悬而未决,并且将为牙科学的发展提供启示。躯干中的口腔外牙齿结构(齿形)与下面的真皮骨板相关联,这使我们问到是否需要形成躯干骨板才能使躯干形齿出现。为了解决这个问题,我们将重点放在Loricarioidei:一种现存的高度多样化的group鱼群中,它们的物种都具有齿形目。我们比较了所有六个loricarioid家族和17个非loricarioid fish鱼家族的齿形及干皮真皮骨板的位置和覆盖范围,以进行比较。我们使用新的10基因数据集,八个时间校准点和降噪技术推断了Loricarioidei的系统发育。基于此系统发育,我们重建了齿状体和骨板覆盖的祖先状态,并发现Loricarioidei的树干突突先于真皮骨板出现。然而,我们发现,当骨板缺失时,其他表面骨骼总是与齿形骨相关,这表明成骨和成牙发展途径之间存在联系,并表明Loricarioidei具有显着的树干成牙潜力。

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