Donald Danforth Plant Science Center, St Louis, MO, USA.
Department of Biology, Saint Louis University, St Louis, MO, USA.
J Exp Bot. 2019 Nov 18;70(21):6261-6276. doi: 10.1093/jxb/erz394.
Inflorescence architecture provides the scaffold on which flowers and fruits develop, and consequently is a primary trait under investigation in many crop systems. Yet the challenge remains to analyse these complex 3D branching structures with appropriate tools. High information content datasets are required to represent the actual structure and facilitate full analysis of both the geometric and the topological features relevant to phenotypic variation in order to clarify evolutionary and developmental inflorescence patterns. We combined advanced imaging (X-ray tomography) and computational approaches (topological and geometric data analysis and structural simulations) to comprehensively characterize grapevine inflorescence architecture (the rachis and all branches without berries) among 10 wild Vitis species. Clustering and correlation analyses revealed unexpected relationships, for example pedicel branch angles were largely independent of other traits. We identified multivariate traits that typified species, which allowed us to classify species with 78.3% accuracy, versus 10% by chance. Twelve traits had strong signals across phylogenetic clades, providing insight into the evolution of inflorescence architecture. We provide an advanced framework to quantify 3D inflorescence and other branched plant structures that can be used to tease apart subtle, heritable features for a better understanding of genetic and environmental effects on plant phenotypes.
花序结构为花和果实的发育提供了支架,因此成为许多作物系统中主要研究的特征。然而,仍然需要用适当的工具来分析这些复杂的 3D 分支结构。需要高信息量数据集来表示实际结构,并促进对与表型变异相关的几何和拓扑特征的全面分析,以阐明进化和发育中的花序模式。我们结合了先进的成像技术(X 射线断层扫描)和计算方法(拓扑和几何数据分析和结构模拟),全面描述了 10 种野生葡萄属植物的花序结构(轴和不带浆果的所有分支)。聚类和相关分析揭示了一些意外的关系,例如花梗分支角度与其他特征基本无关。我们确定了能够代表物种的多变量特征,这些特征使我们能够以 78.3%的准确率对物种进行分类,而随机分类的准确率为 10%。12 个特征在系统发育枝上具有很强的信号,为花序结构的进化提供了深入的了解。我们提供了一个先进的框架来量化 3D 花序和其他分支植物结构,可以用来分离细微的、可遗传的特征,从而更好地理解遗传和环境对植物表型的影响。