Kamvar Zhian N, Brooks Jonah C, Grünwald Niklaus J
Botany and Plant Pathology, Oregon State University Corvallis, OR, USA.
College of Electrical Engineering and Computer Science, Oregon State University Corvallis, OR, USA.
Front Genet. 2015 Jun 10;6:208. doi: 10.3389/fgene.2015.00208. eCollection 2015.
To gain a detailed understanding of how plant microbes evolve and adapt to hosts, pesticides, and other factors, knowledge of the population dynamics and evolutionary history of populations is crucial. Plant pathogen populations are often clonal or partially clonal which requires different analytical tools. With the advent of high throughput sequencing technologies, obtaining genome-wide population genetic data has become easier than ever before. We previously contributed the R package poppr specifically addressing issues with analysis of clonal populations. In this paper we provide several significant extensions to poppr with a focus on large, genome-wide SNP data. Specifically, we provide several new functionalities including the new function mlg.filter to define clone boundaries allowing for inspection and definition of what is a clonal lineage, minimum spanning networks with reticulation, a sliding-window analysis of the index of association, modular bootstrapping of any genetic distance, and analyses across any level of hierarchies.
为了深入了解植物微生物如何进化并适应宿主、农药及其他因素,了解种群动态和种群进化史的知识至关重要。植物病原体种群通常是克隆的或部分克隆的,这需要不同的分析工具。随着高通量测序技术的出现,获取全基因组种群遗传数据比以往任何时候都更容易。我们之前贡献了R包poppr,专门解决克隆种群分析中的问题。在本文中,我们对poppr进行了几个重要扩展,重点关注大型全基因组SNP数据。具体来说,我们提供了几个新功能,包括用于定义克隆边界的新函数mlg.filter,允许检查和定义什么是克隆谱系、带有网状结构的最小生成网络、关联指数的滑动窗口分析、任何遗传距离的模块化自展,以及跨任何层次水平的分析。