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Molecular Plant-Microbe Interactions : MPMI
|
January 26, 2007
Identification and characterization of plant genes involved in Agrobacterium-mediated plant transformation by virus-induced gene silencing
Ajith Anand, Zarir Vaghchhipawala, Choong-Min Ryu, et al.
Scientific Reports
|
June 29, 2016
Characterization, correction and de novo assembly of an Oxford Nanopore genomic dataset from Agrobacterium tumefaciens
Stéphane Deschamps, Joann Mudge, Connor Cameron, et al.
Plant Molecular Biology
|
April 25, 2018
An improved ternary vector system for Agrobacterium-mediated rapid maize transformation
Ajith Anand, Steven H Bass, Emily Wu, et al.
Frontiers in Plant Science
|
September 28, 2020
An Efficient Gene Excision System in Maize
Ning Wang, Maren Arling, George Hoerster, et al.
Plant Biotechnology Journal
|
February 2, 2019
High efficiency Agrobacterium-mediated site-specific gene integration in maize utilizing the FLP-FRT recombination system
Ajith Anand, Emily Wu, Zhi Li, et al.
Communications Biology
|
April 12, 2022
Wuschel2 enables highly efficient CRISPR/Cas-targeted genome editing during rapid de novo shoot regeneration in sorghum
Ping Che, Emily Wu, Marissa K Simon, et al.
Plant Physiology
|
February 22, 2022
Efficient gene targeting in soybean using Ochrobactrum haywardense-mediated delivery of a marker-free donor template
Sandeep Kumar, Zhan-Bin Liu, Nathalie Sanyour-Doyel, et al.
Plant Cell Reports
|
July 27, 2014
Agrobacterium-mediated high-frequency transformation of an elite commercial maize (Zea mays L.) inbred line
Myeong-Je Cho, Emily Wu, Jackie Kwan, et al.
Nature Plants
|
February 9, 2023
Leaf transformation for efficient random integration and targeted genome modification in maize and sorghum
Ning Wang, Larisa Ryan, Nagesh Sardesai, et al.
Plant Biotechnology Journal
|
January 13, 2018
Developing a flexible, high-efficiency Agrobacterium-mediated sorghum transformation system with broad application
Ping Che, Ajith Anand, Emily Wu, et al.
Page
of 4
Search research articles
Search
Showing results (21-30 of 33) with videos related to
Sort By:
Page
of 4
Molecular Plant-Microbe Interactions : MPMI
|
January 26, 2007
Identification and characterization of plant genes involved in Agrobacterium-mediated plant transformation by virus-induced gene silencing
Ajith Anand, Zarir Vaghchhipawala, Choong-Min Ryu, et al.
Scientific Reports
|
June 29, 2016
Characterization, correction and de novo assembly of an Oxford Nanopore genomic dataset from Agrobacterium tumefaciens
Stéphane Deschamps, Joann Mudge, Connor Cameron, et al.
Plant Molecular Biology
|
April 25, 2018
An improved ternary vector system for Agrobacterium-mediated rapid maize transformation
Ajith Anand, Steven H Bass, Emily Wu, et al.
Frontiers in Plant Science
|
September 28, 2020
An Efficient Gene Excision System in Maize
Ning Wang, Maren Arling, George Hoerster, et al.
Plant Biotechnology Journal
|
February 2, 2019
High efficiency Agrobacterium-mediated site-specific gene integration in maize utilizing the FLP-FRT recombination system
Ajith Anand, Emily Wu, Zhi Li, et al.
Communications Biology
|
April 12, 2022
Wuschel2 enables highly efficient CRISPR/Cas-targeted genome editing during rapid de novo shoot regeneration in sorghum
Ping Che, Emily Wu, Marissa K Simon, et al.
Plant Physiology
|
February 22, 2022
Efficient gene targeting in soybean using Ochrobactrum haywardense-mediated delivery of a marker-free donor template
Sandeep Kumar, Zhan-Bin Liu, Nathalie Sanyour-Doyel, et al.
Plant Cell Reports
|
July 27, 2014
Agrobacterium-mediated high-frequency transformation of an elite commercial maize (Zea mays L.) inbred line
Myeong-Je Cho, Emily Wu, Jackie Kwan, et al.
Nature Plants
|
February 9, 2023
Leaf transformation for efficient random integration and targeted genome modification in maize and sorghum
Ning Wang, Larisa Ryan, Nagesh Sardesai, et al.
Plant Biotechnology Journal
|
January 13, 2018
Developing a flexible, high-efficiency Agrobacterium-mediated sorghum transformation system with broad application
Ping Che, Ajith Anand, Emily Wu, et al.
Page
of 4