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FamNet: A Framework to Identify Multiplied Modules Driving Pathway Expansion in Plants

机译:FamNet:用于识别驱动工厂扩展路径的多个模块的框架

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摘要

Gene duplications generate new genes that can acquire similar but often diversified functions. Recent studies of gene coexpression networks have indicated that, not only genes, but also pathways can be multiplied and diversified to perform related functions in different parts of an organism. Identification of such diversified pathways, or modules, is needed to expand our knowledge of biological processes in plants and to understand how biological functions evolve. However, systematic explorations of modules remain scarce, and no user-friendly platform to identify them exists. We have established a statistical framework to identify modules and show that approximately one-third of the genes of a plant’s genome participate in hundreds of multiplied modules. Using this framework as a basis, we implemented a platform that can explore and visualize multiplied modules in coexpression networks of eight plant species. To validate the usefulness of the platform, we identified and functionally characterized pollen- and root-specific cell wall modules that multiplied to confer tip growth in pollen tubes and root hairs, respectively. Furthermore, we identified multiplied modules involved in secondary metabolite synthesis and corroborated them by metabolite profiling of tobacco (Nicotiana tabacum) tissues. The interactive platform, referred to as FamNet, is available at .
机译:基因重复产生新的基因,这些新的基因可以获取相似但通常多样化的功能。对基因共表达网络的最新研究表明,不仅基因,而且途径都可以繁殖和多样化,以在生物体的不同部位执行相关功能。需要确定这种多样化的途径或模块,以扩展我们对植物生物学过程的了解并了解生物学功能如何进化。但是,对模块的系统探索仍然很少,并且不存在用于识别它们的用户友好平台。我们已经建立了一个统计框架来识别模块,并显示出植物基因组中大约三分之一的基因参与了成百上千个模块。以该框架为基础,我们实现了一个平台,该平台可以探索和可视化八个植物物种共表达网络中的多个模块。为了验证该平台的实用性,我们鉴定并在功能上表征了花粉和根特定细胞壁模块,这些模块成倍增加,分别赋予花粉管和根毛尖端生长。此外,我们确定了参与次级代谢产物合成的多个模块,并通过烟草(Nicotiana tabacum)组织的代谢产物谱来证实了它们。交互式平台称为FamNet,可从以下网站获得。

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