门
生物
单系
分类等级
分类单元
系统发育树
生命之树(生物学)
进化生物学
系统发育学
生态学
克莱德
古生物学
生物化学
基因
细菌
作者
Leho Tedersoo,Santiago Sánchez‐Ramírez,Urmas Kõljalg,Mohammad Bahram,Markus Döring,Dmitry Schigel,Tom W. May,Martin Ryberg,Kessy Abarenkov
出处
期刊:Fungal Diversity
[Springer Science+Business Media]
日期:2018-05-01
卷期号:90 (1): 135-159
被引量:606
标识
DOI:10.1007/s13225-018-0401-0
摘要
High-throughput sequencing studies generate vast amounts of taxonomic data. Evolutionary ecological hypotheses of the recovered taxa and Species Hypotheses are difficult to test due to problems with alignments and the lack of a phylogenetic backbone. We propose an updated phylum- and class-level fungal classification accounting for monophyly and divergence time so that the main taxonomic ranks are more informative. Based on phylogenies and divergence time estimates, we adopt phylum rank to Aphelidiomycota, Basidiobolomycota, Calcarisporiellomycota, Glomeromycota, Entomophthoromycota, Entorrhizomycota, Kickxellomycota, Monoblepharomycota, Mortierellomycota and Olpidiomycota. We accept nine subkingdoms to accommodate these 18 phyla. We consider the kingdom Nucleariae (phyla Nuclearida and Fonticulida) as a sister group to the Fungi. We also introduce a perl script and a newick-formatted classification backbone for assigning Species Hypotheses into a hierarchical taxonomic framework, using this or any other classification system. We provide an example of testing evolutionary ecological hypotheses based on a global soil fungal data set.
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