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ASTRAL-III: Increased Scalability and Impacts of Contracting Low Support Branches

机译:星形 - III:增加可扩展性和收缩低支持分支的影响

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Discordances between species trees and gene trees can complicate phylogenetics reconstruction. ASTRAL is a leading method for inferring species trees given gene trees while accounting for incomplete lineage sorting. It finds the tree that shares the maximum number of quartets with input trees, drawing bipartitions from a predefined set of bipartitions X. In this paper, we introduce ASTRAL-III, which substantially improves on ASTRAL-II in terms of running time by handling polytomies more efficiently, exploiting similarities between gene trees, and trimming unnecessary parts of the search space. The asymptotic running time in the presence of polytomies is reduced from O(n~3 k|X|~(1.726)) for n species and k genes to O(D|X|~(1.726)) where D = O(nk) is the sum of degrees of all unique nodes in input trees. ASTRAL-III enables us to test whether contracting low support branches in gene trees improves the accuracy by reducing noise. In extensive simulations and on real data, we show that removing branches with very low support improves accuracy while overly aggressive filtering is harmful.
机译:物种树木和基因树之间的可调性可以使系统发育性重建复杂化。 Astral是给予基因树的推断物树木的推断方法,同时占血统分类。它找到了与输入树共享最大四重奏数的树,从预定义的一组Bipartitions X中绘制两分。在本文中,我们介绍了Astral-III,这通过处理多元质来在运行时间内显着改善了星形-II更有效地,在基因树之间利用相似性,以及修剪搜索空间的不必要的部分。多瘤存在下的渐近运行时间从N物种和K基因的O(n〜3 k | x |〜(1.726))降低至O(d | x |〜(1.726)),其中d = o(nk )输入树中所有唯一节点的程度。 Astral-III使我们能够通过降低噪声来测试基因树中的低支持分支是否提高了准确性。在广泛的模拟和实际数据上,我们表明,在过于激进的过滤的情况下,拆除具有非常低的支持的分支提高了准确性。

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