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The Physarum polycephalum Genome Reveals Extensive Use of Prokaryotic Two-Component and Metazoan-Type Tyrosine Kinase Signaling

Physarum polycephalum is a well-studied microbial eukaryote with unique experimental attributes relative to other experimental model organisms. It has a sophisticated life cycle with several distinct stages including amoebal, flagellated, and plasmodial cells. It is unusual in switching between open...

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Autores principales: Schaap, Pauline, Barrantes, Israel, Minx, Pat, Sasaki, Narie, Anderson, Roger W., Bénard, Marianne, Biggar, Kyle K., Buchler, Nicolas E., Bundschuh, Ralf, Chen, Xiao, Fronick, Catrina, Fulton, Lucinda, Golderer, Georg, Jahn, Niels, Knoop, Volker, Landweber, Laura F., Maric, Chrystelle, Miller, Dennis, Noegel, Angelika A., Peace, Rob, Pierron, Gérard, Sasaki, Taeko, Schallenberg-Rüdinger, Mareike, Schleicher, Michael, Singh, Reema, Spaller, Thomas, Storey, Kenneth B., Suzuki, Takamasa, Tomlinson, Chad, Tyson, John J., Warren, Wesley C., Werner, Ernst R., Werner-Felmayer, Gabriele, Wilson, Richard K., Winckler, Thomas, Gott, Jonatha M., Glöckner, Gernot, Marwan, Wolfgang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4758236/
https://www.ncbi.nlm.nih.gov/pubmed/26615215
http://dx.doi.org/10.1093/gbe/evv237
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author Schaap, Pauline
Barrantes, Israel
Minx, Pat
Sasaki, Narie
Anderson, Roger W.
Bénard, Marianne
Biggar, Kyle K.
Buchler, Nicolas E.
Bundschuh, Ralf
Chen, Xiao
Fronick, Catrina
Fulton, Lucinda
Golderer, Georg
Jahn, Niels
Knoop, Volker
Landweber, Laura F.
Maric, Chrystelle
Miller, Dennis
Noegel, Angelika A.
Peace, Rob
Pierron, Gérard
Sasaki, Taeko
Schallenberg-Rüdinger, Mareike
Schleicher, Michael
Singh, Reema
Spaller, Thomas
Storey, Kenneth B.
Suzuki, Takamasa
Tomlinson, Chad
Tyson, John J.
Warren, Wesley C.
Werner, Ernst R.
Werner-Felmayer, Gabriele
Wilson, Richard K.
Winckler, Thomas
Gott, Jonatha M.
Glöckner, Gernot
Marwan, Wolfgang
author_facet Schaap, Pauline
Barrantes, Israel
Minx, Pat
Sasaki, Narie
Anderson, Roger W.
Bénard, Marianne
Biggar, Kyle K.
Buchler, Nicolas E.
Bundschuh, Ralf
Chen, Xiao
Fronick, Catrina
Fulton, Lucinda
Golderer, Georg
Jahn, Niels
Knoop, Volker
Landweber, Laura F.
Maric, Chrystelle
Miller, Dennis
Noegel, Angelika A.
Peace, Rob
Pierron, Gérard
Sasaki, Taeko
Schallenberg-Rüdinger, Mareike
Schleicher, Michael
Singh, Reema
Spaller, Thomas
Storey, Kenneth B.
Suzuki, Takamasa
Tomlinson, Chad
Tyson, John J.
Warren, Wesley C.
Werner, Ernst R.
Werner-Felmayer, Gabriele
Wilson, Richard K.
Winckler, Thomas
Gott, Jonatha M.
Glöckner, Gernot
Marwan, Wolfgang
author_sort Schaap, Pauline
collection PubMed
description Physarum polycephalum is a well-studied microbial eukaryote with unique experimental attributes relative to other experimental model organisms. It has a sophisticated life cycle with several distinct stages including amoebal, flagellated, and plasmodial cells. It is unusual in switching between open and closed mitosis according to specific life-cycle stages. Here we present the analysis of the genome of this enigmatic and important model organism and compare it with closely related species. The genome is littered with simple and complex repeats and the coding regions are frequently interrupted by introns with a mean size of 100 bases. Complemented with extensive transcriptome data, we define approximately 31,000 gene loci, providing unexpected insights into early eukaryote evolution. We describe extensive use of histidine kinase-based two-component systems and tyrosine kinase signaling, the presence of bacterial and plant type photoreceptors (phytochromes, cryptochrome, and phototropin) and of plant-type pentatricopeptide repeat proteins, as well as metabolic pathways, and a cell cycle control system typically found in more complex eukaryotes. Our analysis characterizes P. polycephalum as a prototypical eukaryote with features attributed to the last common ancestor of Amorphea, that is, the Amoebozoa and Opisthokonts. Specifically, the presence of tyrosine kinases in Acanthamoeba and Physarum as representatives of two distantly related subdivisions of Amoebozoa argues against the later emergence of tyrosine kinase signaling in the opisthokont lineage and also against the acquisition by horizontal gene transfer.
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spelling pubmed-47582362016-03-04 The Physarum polycephalum Genome Reveals Extensive Use of Prokaryotic Two-Component and Metazoan-Type Tyrosine Kinase Signaling Schaap, Pauline Barrantes, Israel Minx, Pat Sasaki, Narie Anderson, Roger W. Bénard, Marianne Biggar, Kyle K. Buchler, Nicolas E. Bundschuh, Ralf Chen, Xiao Fronick, Catrina Fulton, Lucinda Golderer, Georg Jahn, Niels Knoop, Volker Landweber, Laura F. Maric, Chrystelle Miller, Dennis Noegel, Angelika A. Peace, Rob Pierron, Gérard Sasaki, Taeko Schallenberg-Rüdinger, Mareike Schleicher, Michael Singh, Reema Spaller, Thomas Storey, Kenneth B. Suzuki, Takamasa Tomlinson, Chad Tyson, John J. Warren, Wesley C. Werner, Ernst R. Werner-Felmayer, Gabriele Wilson, Richard K. Winckler, Thomas Gott, Jonatha M. Glöckner, Gernot Marwan, Wolfgang Genome Biol Evol Research Article Physarum polycephalum is a well-studied microbial eukaryote with unique experimental attributes relative to other experimental model organisms. It has a sophisticated life cycle with several distinct stages including amoebal, flagellated, and plasmodial cells. It is unusual in switching between open and closed mitosis according to specific life-cycle stages. Here we present the analysis of the genome of this enigmatic and important model organism and compare it with closely related species. The genome is littered with simple and complex repeats and the coding regions are frequently interrupted by introns with a mean size of 100 bases. Complemented with extensive transcriptome data, we define approximately 31,000 gene loci, providing unexpected insights into early eukaryote evolution. We describe extensive use of histidine kinase-based two-component systems and tyrosine kinase signaling, the presence of bacterial and plant type photoreceptors (phytochromes, cryptochrome, and phototropin) and of plant-type pentatricopeptide repeat proteins, as well as metabolic pathways, and a cell cycle control system typically found in more complex eukaryotes. Our analysis characterizes P. polycephalum as a prototypical eukaryote with features attributed to the last common ancestor of Amorphea, that is, the Amoebozoa and Opisthokonts. Specifically, the presence of tyrosine kinases in Acanthamoeba and Physarum as representatives of two distantly related subdivisions of Amoebozoa argues against the later emergence of tyrosine kinase signaling in the opisthokont lineage and also against the acquisition by horizontal gene transfer. Oxford University Press 2015-11-27 /pmc/articles/PMC4758236/ /pubmed/26615215 http://dx.doi.org/10.1093/gbe/evv237 Text en © The Author(s) 2015. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Schaap, Pauline
Barrantes, Israel
Minx, Pat
Sasaki, Narie
Anderson, Roger W.
Bénard, Marianne
Biggar, Kyle K.
Buchler, Nicolas E.
Bundschuh, Ralf
Chen, Xiao
Fronick, Catrina
Fulton, Lucinda
Golderer, Georg
Jahn, Niels
Knoop, Volker
Landweber, Laura F.
Maric, Chrystelle
Miller, Dennis
Noegel, Angelika A.
Peace, Rob
Pierron, Gérard
Sasaki, Taeko
Schallenberg-Rüdinger, Mareike
Schleicher, Michael
Singh, Reema
Spaller, Thomas
Storey, Kenneth B.
Suzuki, Takamasa
Tomlinson, Chad
Tyson, John J.
Warren, Wesley C.
Werner, Ernst R.
Werner-Felmayer, Gabriele
Wilson, Richard K.
Winckler, Thomas
Gott, Jonatha M.
Glöckner, Gernot
Marwan, Wolfgang
The Physarum polycephalum Genome Reveals Extensive Use of Prokaryotic Two-Component and Metazoan-Type Tyrosine Kinase Signaling
title The Physarum polycephalum Genome Reveals Extensive Use of Prokaryotic Two-Component and Metazoan-Type Tyrosine Kinase Signaling
title_full The Physarum polycephalum Genome Reveals Extensive Use of Prokaryotic Two-Component and Metazoan-Type Tyrosine Kinase Signaling
title_fullStr The Physarum polycephalum Genome Reveals Extensive Use of Prokaryotic Two-Component and Metazoan-Type Tyrosine Kinase Signaling
title_full_unstemmed The Physarum polycephalum Genome Reveals Extensive Use of Prokaryotic Two-Component and Metazoan-Type Tyrosine Kinase Signaling
title_short The Physarum polycephalum Genome Reveals Extensive Use of Prokaryotic Two-Component and Metazoan-Type Tyrosine Kinase Signaling
title_sort physarum polycephalum genome reveals extensive use of prokaryotic two-component and metazoan-type tyrosine kinase signaling
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4758236/
https://www.ncbi.nlm.nih.gov/pubmed/26615215
http://dx.doi.org/10.1093/gbe/evv237
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