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Michael Thieme

Showing results (1-10 of 10) with videos related to

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Methods in Molecular Biology (Clifton, N.J.)|April 26, 2021
Identification of Active Transposable Elements in Plants: The Mobilome-Seq ApproachMichael Thieme, Anne C Roulin
Genome Biology and Evolution|November 11, 2024
Natural Diversity of Heat-Induced Transcription of Retrotransposons in Arabidopsis thalianaWenbo Xu, Michael Thieme, Anne C Roulin
Acta Biomaterialia|January 12, 2020
Molybdenum - A biodegradable implant material for structural applications?Christian Redlich, Peter Quadbeck, Michael Thieme, et al.
Environmental Science & Technology|May 30, 2014
Analysis of plant Pb tolerance at realistic submicromolar concentrations demonstrates the role of phytochelatin synthesis for Pb detoxificationSina Fischer, Tanja Kühnlenz, Michael Thieme, et al.
Genome Biology|July 9, 2017
Inhibition of RNA polymerase II allows controlled mobilisation of retrotransposons for plant breedingMichael Thieme, Sophie Lanciano, Sandrine Balzergue, et al.
Nucleic Acids Research|September 22, 2021
Genomic impact of stress-induced transposable element mobility in ArabidopsisDavid Roquis, Marta Robertson, Liang Yu, et al.
The New Phytologist|June 18, 2022
Experimentally heat-induced transposition increases drought tolerance in Arabidopsis thalianaMichael Thieme, Arthur Brêchet, Yann Bourgeois, et al.
Genetics|March 20, 2024
Polygenic architecture of flowering time and its relationship with local environments in the grass Brachypodium distachyonNikolaos Minadakis, Lars Kaderli, Robert Horvath, et al.
Nucleic Acids Research|August 3, 2019
The NRPD1 N-terminus contains a Pol IV-specific motif that is critical for genome surveillance in ArabidopsisLaura Ferrafiat, David Pflieger, Jasleen Singh, et al.
Plos Genetics|March 12, 2024
Transposition of HOPPLA in siRNA-deficient plants suggests a limited effect of the environment on retrotransposon mobility in Brachypodium distachyonMichael Thieme, Nikolaos Minadakis, Christophe Himber, et al.
Pageof 1

Showing results (1-10 of 10) with videos related to

Sort By:
Pageof 1
Methods in Molecular Biology (Clifton, N.J.)|April 26, 2021
Identification of Active Transposable Elements in Plants: The Mobilome-Seq ApproachMichael Thieme, Anne C Roulin
Genome Biology and Evolution|November 11, 2024
Natural Diversity of Heat-Induced Transcription of Retrotransposons in Arabidopsis thalianaWenbo Xu, Michael Thieme, Anne C Roulin
Acta Biomaterialia|January 12, 2020
Molybdenum - A biodegradable implant material for structural applications?Christian Redlich, Peter Quadbeck, Michael Thieme, et al.
Environmental Science & Technology|May 30, 2014
Analysis of plant Pb tolerance at realistic submicromolar concentrations demonstrates the role of phytochelatin synthesis for Pb detoxificationSina Fischer, Tanja Kühnlenz, Michael Thieme, et al.
Genome Biology|July 9, 2017
Inhibition of RNA polymerase II allows controlled mobilisation of retrotransposons for plant breedingMichael Thieme, Sophie Lanciano, Sandrine Balzergue, et al.
Nucleic Acids Research|September 22, 2021
Genomic impact of stress-induced transposable element mobility in ArabidopsisDavid Roquis, Marta Robertson, Liang Yu, et al.
The New Phytologist|June 18, 2022
Experimentally heat-induced transposition increases drought tolerance in Arabidopsis thalianaMichael Thieme, Arthur Brêchet, Yann Bourgeois, et al.
Genetics|March 20, 2024
Polygenic architecture of flowering time and its relationship with local environments in the grass Brachypodium distachyonNikolaos Minadakis, Lars Kaderli, Robert Horvath, et al.
Nucleic Acids Research|August 3, 2019
The NRPD1 N-terminus contains a Pol IV-specific motif that is critical for genome surveillance in ArabidopsisLaura Ferrafiat, David Pflieger, Jasleen Singh, et al.
Plos Genetics|March 12, 2024
Transposition of HOPPLA in siRNA-deficient plants suggests a limited effect of the environment on retrotransposon mobility in Brachypodium distachyonMichael Thieme, Nikolaos Minadakis, Christophe Himber, et al.
Pageof 1