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Linking Genes to Shape in Plants Using Morphometrics.
Annual Review of Genetics ( IF 8.7 ) Pub Date : 2020-11-23 , DOI: 10.1146/annurev-genet-022620-094553
Hao Xu 1 , George W Bassel 1
Affiliation  

A transition from qualitative to quantitative descriptors of morphology has been facilitated through the growing field of morphometrics, representing the conversion of shapes and patterns into numbers. The analysis of plant form at the macromorphological scale using morphometric approaches quantifies what is commonly referred to as a phenotype. Quantitative phenotypic analysis of individuals with contrasting genotypes in turn provides a means to establish links between genes and shapes. The path from a gene to a morphological phenotype is, however, not direct, with instructive information progressing both across multiple scales of biological complexity and through nonintuitive feedback, such as mechanical signals. In this review, we explore morphometric approaches used to perform whole-plant phenotyping and quantitative approaches in capture processes in the mesoscales, which bridge the gaps between genes and shapes in plants. Quantitative frameworks involving both the computational simulation and the discretization of data into networks provide a putative path to predicting emergent shape from underlying genetic programs.

中文翻译:


使用形态计量学将基因链接到植物的形状。

通过形态计量学不断发展的领域(从形状和图案到数字的转换),已经促进了形态学从定性到定量的描述。使用形态计量学方法在宏观形态学规模上对植物形态进行的分析量化了通常被称为表型的现象。具有不同基因型的个体的定量表型分析反过来又提供了一种在基因和形状之间建立联系的方法。但是,从基因到形态表型的途径并不直接,指导性信息不仅可以跨多种生物学复杂程度而且可以通过非直观反馈(例如机械信号)进行传播。在这篇评论中 我们探索了用于在中尺度捕获过程中执行全植物表型鉴定和定量方法的形态计量学方法,这些方法弥合了植物基因和形状之间的差距。涉及计算模拟和将数据离散化为网络的定量框架为从潜在的遗传程序预测出现的形状提供了一条假定的途径。

更新日期:2020-11-25
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