A roadmap of phylogenomic methods for studying polyploid plant genera

IF 2.7 3区 生物学 Q2 PLANT SCIENCES
Weixuan Ning, Heidi M. Meudt, Jennifer A. Tate
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引用次数: 0

Abstract

Phylogenetic inference of polyploid species is the first step towards understanding their patterns of diversification. In this paper, we review the challenges and limitations of inferring species relationships of polyploid plants using traditional phylogenetic sequencing approaches, as well as the mischaracterization of the species tree from single or multiple gene trees. We provide a roadmap to infer interspecific relationships among polyploid lineages by comparing and evaluating the application of current phylogenetic, phylogenomic, transcriptomic, and whole-genome approaches using different sequencing platforms. For polyploid species tree reconstruction, we assess the following criteria: (1) the amount of prior information or tools required to capture the genetic region(s) of interest; (2) the probability of recovering homeologs for polyploid species; and (3) the time efficiency of downstream data analysis. Moreover, we discuss bioinformatic pipelines that can reconstruct networks of polyploid species relationships. In summary, although current phylogenomic approaches have improved our understanding of reticulate species relationships in polyploid-rich genera, the difficulties of recovering reliable orthologous genes and sorting all homeologous copies for allopolyploids remain a challenge. In the future, assembled long-read sequencing data will assist the recovery and identification of multiple gene copies, which can be particularly useful for reconstructing the multiple independent origins of polyploids.

Abstract Image

研究多倍体植物属的系统发生组方法路线图
多倍体物种的系统发育推断是了解其多样化模式的第一步。在本文中,我们回顾了利用传统系统发育测序方法推断多倍体植物物种关系所面临的挑战和局限性,以及单基因树或多基因树对物种树的错误描述。我们通过比较和评估当前使用不同测序平台的系统发生学、系统基因组学、转录组学和全基因组学方法的应用,为推断多倍体系间的种间关系提供了一个路线图。对于多倍体物种树的重建,我们评估了以下标准:(1) 捕获感兴趣的遗传区域所需的先验信息或工具的数量;(2) 恢复多倍体物种同源物的概率;(3) 下游数据分析的时间效率。此外,我们还讨论了可重建多倍体物种关系网络的生物信息学管道。总之,尽管目前的系统发生组学方法提高了我们对富含多倍体属中网状物种关系的理解,但恢复可靠的直向同源基因和对异源多倍体的所有同源拷贝进行分类的困难仍然是一个挑战。未来,组装的长序列测序数据将有助于恢复和鉴定多基因拷贝,这对于重建多倍体的多个独立起源尤其有用。
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来源期刊
CiteScore
7.30
自引率
0.00%
发文量
50
审稿时长
12 weeks
期刊介绍: Applications in Plant Sciences (APPS) is a monthly, peer-reviewed, open access journal promoting the rapid dissemination of newly developed, innovative tools and protocols in all areas of the plant sciences, including genetics, structure, function, development, evolution, systematics, and ecology. Given the rapid progress today in technology and its application in the plant sciences, the goal of APPS is to foster communication within the plant science community to advance scientific research. APPS is a publication of the Botanical Society of America, originating in 2009 as the American Journal of Botany''s online-only section, AJB Primer Notes & Protocols in the Plant Sciences. APPS publishes the following types of articles: (1) Protocol Notes describe new methods and technological advancements; (2) Genomic Resources Articles characterize the development and demonstrate the usefulness of newly developed genomic resources, including transcriptomes; (3) Software Notes detail new software applications; (4) Application Articles illustrate the application of a new protocol, method, or software application within the context of a larger study; (5) Review Articles evaluate available techniques, methods, or protocols; (6) Primer Notes report novel genetic markers with evidence of wide applicability.
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