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Showing results (511-520 of 525) with videos related to

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Plant Biotechnology Journal|January 6, 2022
Chromosome-level Thlaspi arvense genome provides new tools for translational research and for a newly domesticated cash cover crop of the cooler climatesAdam Nunn, Isaac Rodríguez-Arévalo, Zenith Tandukar, et al.
Nature Communications|July 4, 2023
Defining the landscape of circular RNAs in neuroblastoma unveils a global suppressive function of MYCNSteffen Fuchs, Clara Danßmann, Filippos Klironomos, et al.
RNA (New York, N.Y.)|September 24, 2011
RNAcentral: A vision for an international database of RNA sequencesAlex Bateman, Shipra Agrawal, Ewan Birney, et al.
Scientific Reports|October 8, 2016
Differential transcriptional responses to Ebola and Marburg virus infection in bat and human cellsMartin Hölzer, Verena Krähling, Fabian Amman, et al.
Haematologica|July 9, 2016
Alterations of microRNA and microRNA-regulated messenger RNA expression in germinal center B-cell lymphomas determined by integrative sequencing analysisKebria Hezaveh, Andreas Kloetgen, Stephan H Bernhart, et al.
Nature Genetics|November 13, 2012
Recurrent mutation of the ID3 gene in Burkitt lymphoma identified by integrated genome, exome and transcriptome sequencingJulia Richter, Matthias Schlesner, Steve Hoffmann, et al.
Nature Genetics|June 11, 2013
The duck genome and transcriptome provide insight into an avian influenza virus reservoir speciesYinhua Huang, Yingrui Li, David W Burt, et al.
Nature Communications|March 31, 2019
Genomic and transcriptomic changes complement each other in the pathogenesis of sporadic Burkitt lymphomaCristina López, Kortine Kleinheinz, Sietse M Aukema, et al.
Nucleic Acids Research|October 31, 2016
RNAcentral: a comprehensive database of non-coding RNA sequences, Anton I Petrov, Simon J E Kay, et al.
Nature Genetics|October 6, 2015
DNA methylome analysis in Burkitt and follicular lymphomas identifies differentially methylated regions linked to somatic mutation and transcriptional controlHelene Kretzmer, Stephan H Bernhart, Wei Wang, et al.
Pageof 53

Showing results (511-520 of 525) with videos related to

Sort By:
Pageof 53
Plant Biotechnology Journal|January 6, 2022
Chromosome-level Thlaspi arvense genome provides new tools for translational research and for a newly domesticated cash cover crop of the cooler climatesAdam Nunn, Isaac Rodríguez-Arévalo, Zenith Tandukar, et al.
Nature Communications|July 4, 2023
Defining the landscape of circular RNAs in neuroblastoma unveils a global suppressive function of MYCNSteffen Fuchs, Clara Danßmann, Filippos Klironomos, et al.
RNA (New York, N.Y.)|September 24, 2011
RNAcentral: A vision for an international database of RNA sequencesAlex Bateman, Shipra Agrawal, Ewan Birney, et al.
Scientific Reports|October 8, 2016
Differential transcriptional responses to Ebola and Marburg virus infection in bat and human cellsMartin Hölzer, Verena Krähling, Fabian Amman, et al.
Haematologica|July 9, 2016
Alterations of microRNA and microRNA-regulated messenger RNA expression in germinal center B-cell lymphomas determined by integrative sequencing analysisKebria Hezaveh, Andreas Kloetgen, Stephan H Bernhart, et al.
Nature Genetics|November 13, 2012
Recurrent mutation of the ID3 gene in Burkitt lymphoma identified by integrated genome, exome and transcriptome sequencingJulia Richter, Matthias Schlesner, Steve Hoffmann, et al.
Nature Genetics|June 11, 2013
The duck genome and transcriptome provide insight into an avian influenza virus reservoir speciesYinhua Huang, Yingrui Li, David W Burt, et al.
Nature Communications|March 31, 2019
Genomic and transcriptomic changes complement each other in the pathogenesis of sporadic Burkitt lymphomaCristina López, Kortine Kleinheinz, Sietse M Aukema, et al.
Nucleic Acids Research|October 31, 2016
RNAcentral: a comprehensive database of non-coding RNA sequences, Anton I Petrov, Simon J E Kay, et al.
Nature Genetics|October 6, 2015
DNA methylome analysis in Burkitt and follicular lymphomas identifies differentially methylated regions linked to somatic mutation and transcriptional controlHelene Kretzmer, Stephan H Bernhart, Wei Wang, et al.
Pageof 53