National Evolutionary Synthesis Center, Durham, North Carolina, United States of America.
PLoS One. 2010 May 5;5(5):e10500. doi: 10.1371/journal.pone.0010500.
Phenotypic differences among species have long been systematically itemized and described by biologists in the process of investigating phylogenetic relationships and trait evolution. Traditionally, these descriptions have been expressed in natural language within the context of individual journal publications or monographs. As such, this rich store of phenotype data has been largely unavailable for statistical and computational comparisons across studies or integration with other biological knowledge.
METHODOLOGY/PRINCIPAL FINDINGS: Here we describe Phenex, a platform-independent desktop application designed to facilitate efficient and consistent annotation of phenotypic similarities and differences using Entity-Quality syntax, drawing on terms from community ontologies for anatomical entities, phenotypic qualities, and taxonomic names. Phenex can be configured to load only those ontologies pertinent to a taxonomic group of interest. The graphical user interface was optimized for evolutionary biologists accustomed to working with lists of taxa, characters, character states, and character-by-taxon matrices.
CONCLUSIONS/SIGNIFICANCE: Annotation of phenotypic data using ontologies and globally unique taxonomic identifiers will allow biologists to integrate phenotypic data from different organisms and studies, leveraging decades of work in systematics and comparative morphology.
在研究系统发育关系和性状进化的过程中,生物学家早已系统地列出和描述了物种之间的表型差异。传统上,这些描述是在个别期刊出版物或专论的背景下用自然语言表达的。因此,这些丰富的表型数据在很大程度上无法进行跨研究的统计和计算比较,也无法与其他生物学知识进行整合。
方法/主要发现:在这里,我们描述了 Phenex,这是一个独立于平台的桌面应用程序,旨在使用实体-质量语法高效且一致地注释表型的相似和不同之处,该语法借鉴了解剖实体、表型质量和分类名称的社区本体论中的术语。Phenex 可以配置为仅加载与感兴趣的分类群相关的本体论。图形用户界面针对习惯于处理分类群列表、特征、特征状态和特征-分类群矩阵的进化生物学家进行了优化。
结论/意义:使用本体论和全球唯一的分类标识符对表型数据进行注释,将使生物学家能够整合来自不同生物体和研究的表型数据,利用系统学和比较形态学几十年的工作成果。