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Changzeng Zhao

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

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Current Protocols in Plant Biology|November 15, 2019
Fluorescence In Situ Hybridization to Maize (Zea mays) ChromosomesMorgan McCaw, Nathaniel Graham, Jon Cody, et al.
Current Protocols in Plant Biology|November 15, 2019
Preparation of Chromosomes from Zea maysMorgan McCaw, Nathan Swyers, Nathaniel Graham, et al.
Methods in Molecular Biology (Clifton, N.J.)|August 26, 2016
Production of Engineered Minichromosome Vectors via the Introduction of Telomere SequencesNathaniel Graham, Nathan Swyers, Jon Cody, et al.
Annual Review of Plant Biology|December 6, 2011
Synthetic chromosome platforms in plantsRobert T Gaeta, Rick E Masonbrink, Lakshminarasimhan Krishnaswamy, et al.
Plant Direct|March 14, 2020
Site-specific recombinase genome engineering toolkit in maizeJon P Cody, Nathaniel D Graham, Changzeng Zhao, et al.
Chromosoma|March 23, 2013
In vivo modification of a maize engineered minichromosomeRobert T Gaeta, Rick E Masonbrink, Changzeng Zhao, et al.
International Review of Cell and Molecular Biology|August 29, 2015
Engineered Minichromosomes in Plants: Structure, Function, and ApplicationsNathaniel D Graham, Jon P Cody, Nathan C Swyers, et al.
Genome|March 23, 2011
Recovery of a telomere-truncated chromosome via a compensating translocation in maizeRobert T Gaeta, Tatiana V Danilova, Changzeng Zhao, et al.
Current Protocols in Plant Biology|November 15, 2019
Telomere-Mediated Chromosomal Truncation for Generating Engineered Minichromosomes in MaizeNathan C Swyers, Jon P Cody, Morgan E McCaw, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 5, 2021
Sequence of the supernumerary B chromosome of maize provides insight into its drive mechanism and evolutionNicolas Blavet, Hua Yang, Handong Su, et al.
Pageof 1

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

Sort By:
Pageof 1
Current Protocols in Plant Biology|November 15, 2019
Fluorescence In Situ Hybridization to Maize (Zea mays) ChromosomesMorgan McCaw, Nathaniel Graham, Jon Cody, et al.
Current Protocols in Plant Biology|November 15, 2019
Preparation of Chromosomes from Zea maysMorgan McCaw, Nathan Swyers, Nathaniel Graham, et al.
Methods in Molecular Biology (Clifton, N.J.)|August 26, 2016
Production of Engineered Minichromosome Vectors via the Introduction of Telomere SequencesNathaniel Graham, Nathan Swyers, Jon Cody, et al.
Annual Review of Plant Biology|December 6, 2011
Synthetic chromosome platforms in plantsRobert T Gaeta, Rick E Masonbrink, Lakshminarasimhan Krishnaswamy, et al.
Plant Direct|March 14, 2020
Site-specific recombinase genome engineering toolkit in maizeJon P Cody, Nathaniel D Graham, Changzeng Zhao, et al.
Chromosoma|March 23, 2013
In vivo modification of a maize engineered minichromosomeRobert T Gaeta, Rick E Masonbrink, Changzeng Zhao, et al.
International Review of Cell and Molecular Biology|August 29, 2015
Engineered Minichromosomes in Plants: Structure, Function, and ApplicationsNathaniel D Graham, Jon P Cody, Nathan C Swyers, et al.
Genome|March 23, 2011
Recovery of a telomere-truncated chromosome via a compensating translocation in maizeRobert T Gaeta, Tatiana V Danilova, Changzeng Zhao, et al.
Current Protocols in Plant Biology|November 15, 2019
Telomere-Mediated Chromosomal Truncation for Generating Engineered Minichromosomes in MaizeNathan C Swyers, Jon P Cody, Morgan E McCaw, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 5, 2021
Sequence of the supernumerary B chromosome of maize provides insight into its drive mechanism and evolutionNicolas Blavet, Hua Yang, Handong Su, et al.
Pageof 1