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首页> 外文期刊>Journal of Applied Ichthyology >500,000 fish phenotypes: The new informatics landscape for evolutionary and developmental biology of the vertebrate skeleton
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500,000 fish phenotypes: The new informatics landscape for evolutionary and developmental biology of the vertebrate skeleton

机译:500,000种鱼类表型:脊椎动物骨骼进化和发育生物学的新信息学景观

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摘要

The rich phenotypic diversity that characterizes the vertebrate skeleton results from evolutionary changes in regulation of genes that drive development. Although relatively little is known about the genes that underlie the skeletal variation among fish species, significant knowledge of genetics and development is available for zebrafish. Because developmental processes are highly conserved, this knowledge can be leveraged for understanding the evolution of skeletal diversity. We developed the Phenoscape Knowledgebase (KB; ) to yield testable hypotheses of candidate genes involved in skeletal evolution. We developed a community anatomy ontology for fishes and ontology-based methods to represent complex free-text character descriptions of species in a computable format. With these tools, we populated the KB with comparative morphological data from the literature on over 2500 teleost fishes (mainly Ostariophysi) resulting in over 500,000 taxon phenotype annotations. The KB integrates these data with similarly structured phenotype data from zebrafish genes (). Using ontology-based reasoning, candidate genes can be inferred for the phenotypes that vary across taxa, thereby uniting genetic and phenotypic data to formulate evo-devo hypotheses. The morphological data in the KB can be browsed, sorted, and aggregated in ways that provide unprecedented possibilities for data mining and discovery.
机译:表征脊椎动物骨骼的丰富表型多样性来自驱动发育的基因调控的进化变化。尽管对鱼类物种骨骼变异基础基因的了解相对较少,但斑马鱼的遗传学和发育知识十分丰富。因为发育过程是高度保守的,所以可以利用这些知识来了解骨骼多样性的演变。我们开发了Phenoscape知识库(KB;),以产生参与骨骼进化的候选基因的可检验假设。我们开发了鱼类的社区解剖本体和基于本体的方法,以可计算的格式表示物种的复杂自由文本字符描述。使用这些工具,我们用来自文献的2500多种硬骨鱼类(主要是Ostariophysi)的比较形态学数据填充了KB,从而产生了500,000多个分类群表型注释。 KB将这些数据与来自斑马鱼基因的结构相似的表型数据整合在一起。使用基于本体的推理,可以推断出在整个分类单元中变化的表型的候选基因,从而将遗传数据和表型数据结合起来,以提出进化论假设。 KB中的形态数据可以以提供前所未有的数据挖掘和发现可能性的方式进行浏览,排序和聚合。

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