Background: Transposable elements (TEs) are mobile DNA sequences known as drivers of genome evolution. Their impacts have been widely studied in animals, plants and insects, but little is known about them in microalgae. In a previous study, we compared the genetic polymorphisms between strains of the haptophyte microalga Tisochrysis lutea and suggested the involvement of active autonomous TEs in their genome evolution. Results: To identify potentially autonomous TEs, we designed a pipeline named PiRATE (Pipeline to Retrieve and Annotate Transposable Elements, download: https://doi.org/10.17882/51795), and conducted an accurate TE annotation on a new genome assembly of T. lutea. PiRATE is composed of detection, classification and annotation ...
Background Unicellular species make up the majority of eukaryotic diversity, however most studies on...
The applied exploitation of microalgae cultures has to date almost exclusively involved the use of w...
Transposable elements are powerful drivers of genome evolution in many eukaryotes. Although they are...
Abstract Background Transposable elements (TEs) are mobile DNA sequences known as drivers of genome ...
Les éléments transposables (ETs) sont des acteurs majeurs de la dynamique des génomes. Ils regroupen...
Percentage of identity between copies of the expressed TE families. This file lists the percentage o...
Sequences alignment of TE copies of the TIR/Mariner Luffy family. This file contains the sequence al...
Microalgal domestication is an expanding research field that aims to multiply and accelerate the pot...
Abstract: Background: Unicellular species make up the majority of eukaryotic diversity, however most...
Background: Transposable elements (TEs) are genomic parasites with major impacts on host genome arch...
Transposable elements (TEs) are found in nearly all eukaryotic genomes and are a major driving force...
Background:Unicellular species make up the majority of eukaryotic diversity, however most studies on...
The applied exploitation of microalgae cultures has to date almost exclusively involved the use of w...
Additional supporting information. This file contains the additional supporting figures, tables, res...
Background Unicellular species make up the majority of eukaryotic diversity, however most studies on...
Background Unicellular species make up the majority of eukaryotic diversity, however most studies on...
The applied exploitation of microalgae cultures has to date almost exclusively involved the use of w...
Transposable elements are powerful drivers of genome evolution in many eukaryotes. Although they are...
Abstract Background Transposable elements (TEs) are mobile DNA sequences known as drivers of genome ...
Les éléments transposables (ETs) sont des acteurs majeurs de la dynamique des génomes. Ils regroupen...
Percentage of identity between copies of the expressed TE families. This file lists the percentage o...
Sequences alignment of TE copies of the TIR/Mariner Luffy family. This file contains the sequence al...
Microalgal domestication is an expanding research field that aims to multiply and accelerate the pot...
Abstract: Background: Unicellular species make up the majority of eukaryotic diversity, however most...
Background: Transposable elements (TEs) are genomic parasites with major impacts on host genome arch...
Transposable elements (TEs) are found in nearly all eukaryotic genomes and are a major driving force...
Background:Unicellular species make up the majority of eukaryotic diversity, however most studies on...
The applied exploitation of microalgae cultures has to date almost exclusively involved the use of w...
Additional supporting information. This file contains the additional supporting figures, tables, res...
Background Unicellular species make up the majority of eukaryotic diversity, however most studies on...
Background Unicellular species make up the majority of eukaryotic diversity, however most studies on...
The applied exploitation of microalgae cultures has to date almost exclusively involved the use of w...
Transposable elements are powerful drivers of genome evolution in many eukaryotes. Although they are...