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The Logical Basis for the use of Continuous Characters in Phylogenetic Systematics
Author(s) -
Rae Todd C
Publication year - 1998
Publication title -
cladistics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.323
H-Index - 92
eISSN - 1096-0031
pISSN - 0748-3007
DOI - 10.1111/j.1096-0031.1998.tb00335.x
Subject(s) - phylogenetic tree , cladistics , biology , evolutionary biology , most recent common ancestor , taxon , coding (social sciences) , character (mathematics) , raw data , ancestor , color coding , basis (linear algebra) , phylogenetics , statistics , mathematics , computer science , artificial intelligence , genetics , paleontology , geography , geometry , archaeology , gene
It has been argued that continuous characteristics should be excluded from cladistic analysis for two reasons: because the data are considered inappropriate; and because the methods for the conversion of these data into codes are considered arbitrary. Metric data, however, fulfill the sole criterion for inclusion in phylogenetic analysis, the presence of homologous character states, and thus cannot be excluded as a class of data. The second line of reasoning, that coding methods are arbitrary, applies to gap and segment coding, but quantitative data can be coded in a nonarbitrary manner by means of tests of statistical significance. These procedures, which are both objective and repeatable, determine the probability that two taxa possess an homologous character state; that is, if they have inherited a particular central tendency and distribution of individual variates unchanged from a common ancestor. Thus, the application of statistical tests to quantitative data empirically detects the presence of evolu tionary change, the raw material of phylogenetic reconstruction.