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Provedor de dados:  Nature Precedings
País:  United Kingdom
Título:  A stable backbone for the fungi
Autores:  Ingo Ebersberger
Matthias Gube
Sascha Strauss
Anne Kupczok
Martin Eckart
Kerstin Voigt
Erika Kothe
Arndt von Haeseler
Data:  2009-02-24
Ano:  2009
Palavras-chave:  Ecology
Bioinformatics
Resumo:  Fungi are abundant in the biosphere. They have fascinated mankind as far as written history goes and have considerably influenced our culture. In biotechnology, cell biology, genetics, and life sciences in general fungi constitute relevant model organisms. Once the phylogenetic relationships of fungi are stably resolved individual results from fungal research can be combined into a holistic picture of biology. However, and despite recent progress, the backbone of the fungal phylogeny is not yet fully resolved. Especially the early evolutionary history of fungi and the order or below-order relationships within the ascomycetes remain uncertain. Here we present the first phylogenomic study for a eukaryotic kingdom that merges all publicly available fungal genomes and expressed sequence tags (EST) to build a data set comprising 128 genes and 146 taxa. The resulting tree provides a stable phylogenetic backbone for the fungi. Moreover, we present the first formal supertree based on 161 fungal taxa and 128 gene trees. The combined evidences from the trees support the deep-level stability of the fungal groups towards a comprehensive natural system of the fungi. They indicate that the classification of the fungi, especially their alliance with the Microsporidia, requires careful revision. Our analysis is also an inventory of present day sequence information for the fungi. It provides insights into which phylogenenetic conclusions can and which cannot be drawn from the current data and may serve as a guide to direct further sequencing initiatives. Together with a comprehensive animal phylogeny, we provide the second of three pillars to understand the evolution of the multicellular eukaryotic kingdoms, fungi, metazoa, and plants, in the past 1.6 billion years.
Tipo:  Manuscript
Identificador:  http://precedings.nature.com/documents/2901/version/1

oai:nature.com:10101/npre.2009.2901.1

http://hdl.handle.net/10101/npre.2009.2901.1
Fonte:  Nature Precedings
Direitos:  Creative Commons Attribution 3.0 License
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