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告别字符独立性要求:将字符之间不同类型的相关性纳入系统发育方法。

Farewell to the requirement for character independence: phylogenetic methods to incorporate different types of dependence between characters.

机构信息

Unidad Ejecutora Lillo, UEL (CONICET-Fundación Miguel Lillo), Miguel Lillo 251, 4000, S.M. de Tucumán, Argentina.

Meise Botanic Garden, Nieuwelaan 38, Meise, Belgium.

出版信息

Cladistics. 2024 Jun;40(3):209-241. doi: 10.1111/cla.12564. Epub 2023 Nov 28.

Abstract

This paper discusses methods to take into account interactions between characters, in the context of parsimony analysis. These interactions can be in the form of some characters becoming inapplicable given certain states of other, primary characters; in the form of only certain states being allowed in some characters when a given state or set of states occurs for other characters; or in the form of transformation costs in some character being higher or lower when other characters have certain states or transformations between states. Character-state reconstructions and evaluation of trees under the assumption of independence may easily lead to ancestral assignments that violate elementary rules of biomechanics, well-established theories relating form and function or ideas about character co-variation. An obvious example is reconstructing an ancestral bird as wingless and flying at the same time; another is reconstructing a protein-coding gene as having a stop codon in some ancestors. If the characters are optimized independently, such chimeric ancestral reconstructions can occur even when no terminal displays the impossible combination of states. A set of conventions (implemented via new TNT commands and options) allows the definition of complex rules of interaction. By recoding groups of characters with proper step-matrix costs (and excluding impossible combinations from the set of permissible states), it is possible to find the ancestral reconstructions that maximize homology (and thus the degree to which similarities can be explained by common ancestry), within the constraints imposed by the rules specified by the user. We expect that considerations of biomechanics, functional morphology and natural history will be a source of many theories on possible character dependences, and that the present implementation will encourage users to take the possibility of character dependences into account in their phylogenetic analyses.

摘要

本文讨论了在简约分析中考虑字符之间相互作用的方法。这些相互作用可以表现为某些字符在其他主要字符处于某些状态时变得不适用;也可以表现为在其他字符出现给定状态或状态集时,某些字符只允许某些状态;或者在某些字符的转换成本较高或较低时,其他字符具有某些状态或状态之间的转换。在假设独立性的情况下,字符状态重建和树的评估可能很容易导致违反基本生物力学规则、与形态和功能相关的既定理论或关于字符共变的观念的祖先分配。一个明显的例子是将祖先鸟类重建为无翼且同时飞行;另一个例子是将编码蛋白质的基因重建为在某些祖先中具有终止密码子。如果字符是独立优化的,即使终端没有显示状态的不可能组合,这种嵌合祖先重建也可能发生。一组约定(通过新的 TNT 命令和选项实现)允许定义复杂的相互作用规则。通过为具有适当步长矩阵成本的字符组重新编码(并将不可能的组合从允许状态集中排除),可以找到最大限度地保持同源性(从而最大限度地解释相似性可以归因于共同祖先)的祖先重建,这在用户指定的规则所施加的限制内。我们预计,生物力学、功能形态学和自然历史的考虑将成为许多关于可能的字符依赖性的理论的来源,并且当前的实现将鼓励用户在其系统发育分析中考虑字符依赖性的可能性。

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