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The genome of S. mediterranea and the evolution of cellular core mechanisms
by
Young, George Robert
, Winkler, Sylke
, Hiller, Michael
, Schloissnig, Siegfried
, Dahl, Andreas
, Rink, Jochen Christian
, Henry, Ian
, Powell, Sean
, Myers, Eugene
, Rozanski, Andrei
, Pippel, Martin
, Brandl, Holger
, Grohme, Markus Alexander
2018
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The genome of S. mediterranea and the evolution of cellular core mechanisms
by
Young, George Robert
, Winkler, Sylke
, Hiller, Michael
, Schloissnig, Siegfried
, Dahl, Andreas
, Rink, Jochen Christian
, Henry, Ian
, Powell, Sean
, Myers, Eugene
, Rozanski, Andrei
, Pippel, Martin
, Brandl, Holger
, Grohme, Markus Alexander
in
2018
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Do you wish to request the book?
The genome of S. mediterranea and the evolution of cellular core mechanisms
by
Young, George Robert
, Winkler, Sylke
, Hiller, Michael
, Schloissnig, Siegfried
, Dahl, Andreas
, Rink, Jochen Christian
, Henry, Ian
, Powell, Sean
, Myers, Eugene
, Rozanski, Andrei
, Pippel, Martin
, Brandl, Holger
, Grohme, Markus Alexander
2018
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The genome of S. mediterranea and the evolution of cellular core mechanisms
Journal Article
The genome of S. mediterranea and the evolution of cellular core mechanisms
2018
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Overview
The planarian Schmidtea mediterranea is an important model for stem cell research and regeneration. We report the first highly contiguous genome assembly of Schmidtea mediterranea, using long-read sequencing and a de novo assembler (MARVEL) enhanced for low complexity reads. The S. mediterranea genome is highly polymorphic and repetitive genome, and harbors a novel class of giant Gypsy retroelements. Further, the genome assembly lacks a number of highly conserved genes, including critical components of the mitotic spindle assembly checkpoint, yet planarians maintain checkpoint function. Our genome assembly provides a key model system resource that will be useful for studying regeneration and the evolutionary plasticity of cell biological core mechanisms.
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