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整合种表现型树:可视化谱系内的种下多样性。

Integrated species-phenon trees: visualizing infraspecific diversity within lineages.

机构信息

Department of Earth, Atmospheric, and Planetary Sciences, Purdue University, West Lafayette, IN, USA.

Research School of Earth Sciences, Australian National University, Canberra, ACT, Australia.

出版信息

Sci Rep. 2019 Dec 12;9(1):18968. doi: 10.1038/s41598-019-55435-w.

Abstract

The unprecedented detail with which contemporary molecular phylogenetics are visualizing infraspecific relationships within living species and species complexes cannot as yet be reliably extended into deep time. Yet paleontological systematics has routinely dealt in (mainly) morphotaxa envisaged in various ways to have been components of past species lineages. Bridging these perspectives can only enrich both. We present a visualization tool that digitally depicts infraspecific diversity within species through deep time. Our integrated species-phenon tree merges ancestor-descendant trees for fossil morphotaxa (phena) into reconstructed phylogenies of lineages (species) by expanding the latter into "species boxes" and placing the phenon trees inside. A key programming strategy to overcome the lack of a simple overall parent-child hierarchy in the integrated tree has been the progressive population of a species-phenon relationship map which then provides the graphical footprint for the overarching species boxes. Our initial case has been limited to planktonic foraminfera via Aze & others' important macroevolutionary dataset. The tool could potentially be appropriated for other organisms, to detail other kinds of infraspecific granularity within lineages, or more generally to visualize two nested but loosely coupled trees.

摘要

当代分子系统发生学以前所未有的细节描绘了现存物种和物种复合体内部的种下关系,但这些信息还不能可靠地扩展到远古时期。然而,古系统学通常处理的是(主要)形态分类单元,这些分类单元以各种方式被设想为过去物种谱系的组成部分。将这些观点联系起来只会使两者都更加丰富。我们提出了一种可视化工具,可以通过深入的时间来数字化描绘物种内部的种下多样性。我们的综合种-现象树通过扩展后者成“种盒”并将现象树置于其中,将化石形态分类单元(现象)的祖先-后代树合并到谱系(种)的重建系统发育中。为了克服综合树中缺乏简单的总体父子层次结构的问题,我们采用了一种关键的编程策略,即逐步填充种-现象关系图,然后为总体种盒提供图形足迹。我们的初始案例仅限于通过 Aze 等人的重要宏观进化数据集来研究浮游有孔虫。该工具可以被适用于其他生物体,以详细描述谱系内其他种类的种下粒度,或者更一般地用于可视化两个嵌套但松散耦合的树。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83d4/6908663/650ec8300460/41598_2019_55435_Fig1_HTML.jpg

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