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Functional phenomics: an emerging field integrating high-throughput phenotyping, physiology, and bioinformatics

机译:功能性表征:一种整合高通量表型,生理学和生物信息学的新兴领域

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摘要

The emergence of functional phenomics signifies the rebirth of physiology as a 21st century science through the use of advanced sensing technologies and big data analytics. Functional phenomics seeks to fill the significant knowledge gaps that still exist in the relationship of plant phenotype to function. Here, a general approach for the theory and practice of functional phenomics is outlined. The functional phenomics pipeline is proposed as a general method for conceptualizing, measuring, and validating utility of plant phenes, or elemental units of phenotype. The functional phenomics pipeline begins with ideotype development. Second, a phenotyping platform is developed to maximize the throughput of phene measurements. Target phenes and indicators of plant function, or performance, are measured in a mapping population. Forward genetics allows genetic mapping, while functional phenomics links phenes to plant performance. Based on these data, genotypes with contrasting phenotypes can be selected for smaller yet more intensive experiments to understand phene-environment interactions in depth. Simulation modeling is used to further understand the phenotypes, and all stages of the pipeline feed back to ideotype and phenotyping platform development. In total, functional phenomics represents an evolution of pre-existing disciplines, but the goals and unique methodologies constitute a novel research program.
机译:功能性表情的出现通过使用先进的传感技术和大数据分析来表示生理学重生作为21世纪的科学。功能性表情旨在填补植物表型与功能关系中仍然存在的重要知识间隙。这里,概述了函数性表征理论和实践的一般方法。功能性表情管道被提出为概念化,测量和验证植物证物的效用,或表型元素单位的一般方法。功能性表情管道始于IDETYPE开发。其次,开发了一种表型平台以最大化PHENE测量的吞吐量。植物功能或性能的目标素材和指标在映射人口中测量。前瞻性遗传允许遗传映射,而功能性表情可以将植物与植物性能联系起来。基于这些数据,可以选择具有对比表型的基因型,以便更小的更加强烈的实验,以了解Phene环境的相互作用。仿真建模用于进一步了解表型,管道的所有阶段都归还给意识别和表型平台开发。总之,功能性表现是预先存在的学科的演变,但目标和独特的方法构成了一种新的研究计划。

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