Mapping the genetic architecture of developmental modularity in ornamental plants

Zhenying Wen, Libo Jiang, Mingyu Li, Ang Dong, Meixia Ye, J. Meng, Li Ping, T. Cheng, Qixiang Zhang, Lidan Sun
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引用次数: 1

Abstract

Developmental modularity, i.e., coherent organization and function of developmentally related traits, is an emergent property of organismic development and evolution. However, knowledge about how modular variation and evolution are driven genetically is still limited. Here, using ornamental plants as an example, we propose a computational framework to map, visualize and annotate the genetic architecture of trait modularity by integrating modularity theory into system mapping, a statistical model for multifaceted genetic mapping of complex traits. A developmental module can be viewed as an ecosystem, in which the constituting components compete for space and resources or cooperate symbiotically to organize its function and behavior. This interactive process is quantified by mathematical models and evolutionarily interpreted by game theory. The proposed framework can test whether and how genes regulate the coordination of different but interconnected traits through their competition or cooperation to downstream developmental modularity.
观赏植物发育模块性的遗传结构图谱
发育模块性,即发育相关性状的连贯组织和功能,是生物发育和进化的一个新特性。然而,关于模块化变异和进化是如何被基因驱动的知识仍然有限。本文以观赏植物为例,将模块化理论与复杂性状的多面遗传定位统计模型系统映射相结合,提出了一种计算框架来绘制、可视化和注释性状模块化遗传结构。一个发展的模块可以被看作是一个生态系统,在这个生态系统中,各个组成部分争夺空间和资源,或者共生合作,组织其功能和行为。这种相互作用的过程被数学模型量化,并被博弈论进化地解释。所提出的框架可以测试基因是否以及如何通过它们的竞争或合作来调节下游发育模块化的不同但相互关联的性状的协调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.60
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