Krieg Christopher P
Department of Botany University of Wisconsin Madison Wisconsin USA.
Appl Plant Sci. 2024 Aug 22;12(4):e11612. doi: 10.1002/aps3.11612. eCollection 2024 Jul-Aug.
Hybridization and polyploidization are common in vascular plants and important drivers of biodiversity by facilitating speciation and ecological diversification. A primary limitation to making broad synthetic discoveries in hybrid and allopolyploid biodiversity research is the absence of a standardized framework to compare data across studies and biological scales.
Here, I present a new quantitative framework to investigate and interpret patterns in hybrid and allopolyploid biology called the divergence index (DI). The DI framework produces standardized data that are comparable across studies and variables. To show how the DI framework can be used to synthesize data, I analyzed published biochemical, physiological, and ecological trait data of hybrids and allopolyploids. I also apply key ecological and evolutionary concepts in hybrid and polyploid biology to translate nominal outcomes, including transgression, intermediacy, expansion, and contraction, in continuous DI space.
Biochemical, physiological, ecological, and evolutionary data can all be analyzed, visualized, and interpreted in the DI framework. The DI framework is particularly suited to standardize and compare variables with very different scales. When using the DI framework to understand niche divergence, a metric of niche overlap can be used to complement insights to centroid and breadth changes.
The DI framework is an accessible framework for hybrid and allopolyploid biology and represents a flexible and intuitive tool that can be used to reconcile outstanding problems in plant biodiversity research.
杂交和多倍体化在维管植物中很常见,并且通过促进物种形成和生态多样化,成为生物多样性的重要驱动因素。在杂交和异源多倍体生物多样性研究中进行广泛综合发现的一个主要限制是缺乏一个标准化框架来比较不同研究和生物尺度的数据。
在此,我提出了一个新的定量框架来研究和解释杂交和异源多倍体生物学中的模式,称为分歧指数(DI)。DI框架产生的标准化数据在不同研究和变量之间具有可比性。为了展示DI框架如何用于综合数据,我分析了已发表的杂交种和异源多倍体的生化、生理和生态特征数据。我还应用杂交和多倍体生物学中的关键生态和进化概念,将名义结果(包括超亲、中间型、扩展和收缩)转化为连续的DI空间。
生化、生理、生态和进化数据都可以在DI框架中进行分析、可视化和解释。DI框架特别适合标准化和比较尺度差异很大的变量。在使用DI框架理解生态位分歧时,可以使用生态位重叠指标来补充对质心和宽度变化的见解。
DI框架是杂交和异源多倍体生物学中一个易于理解的框架,代表了一种灵活且直观的工具,可用于解决植物生物多样性研究中的突出问题。