Department of Computer Science, Durham University, Durham, UK.
School of Mathematics and Statistics, University of Canterbury, Christchurch, New Zealand.
J Math Biol. 2024 Mar 6;88(4):40. doi: 10.1007/s00285-024-02059-y.
Phylogenetic diversity is a popular measure for quantifying the biodiversity of a collection Y of species, while phylogenetic diversity indices provide a way to apportion phylogenetic diversity to individual species. Typically, for some specific diversity index, the phylogenetic diversity of Y is not equal to the sum of the diversity indices of the species in Y. In this paper, we investigate the extent of this difference for two commonly-used indices: Fair Proportion and Equal Splits. In particular, we determine the maximum value of this difference under various instances including when the associated rooted phylogenetic tree is allowed to vary across all rooted phylogenetic trees with the same leaf set and whose edge lengths are constrained by either their total sum or their maximum value.
系统发育多样性是一种常用的衡量物种集合 Y 的生物多样性的方法,而系统发育多样性指数则提供了一种将系统发育多样性分配给各个物种的方法。通常情况下,对于某些特定的多样性指数,Y 的系统发育多样性并不等于 Y 中物种多样性指数的总和。在本文中,我们研究了两个常用指数:公平比例和均等分裂的差异程度。具体来说,我们在各种情况下确定了这种差异的最大值,包括当相关的有根系统发育树允许在具有相同叶集的所有有根系统发育树上变化,并且其边长度受到其总和或最大值的约束时。