日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Quantitative Dissection of Agrobacterium Virulence to Generate a Synthetic Ti Plasmid

定量分析农杆菌毒力以构建合成Ti质粒

Thompson, Mitchell G; Kirkpatrick, Liam D; Szarzanowicz, Matthew J; Geiselman, Gina M; Waldburger, Lucas M; Pearson, Allison N; Vuu, Khanh M; Markel, Kasey; Hummel, Niklas F C; Incha, Matthew R; Suazo, Dennis D; Tahmin, Claudine; Cui, Ruoming; Liu, Shuying; Cevallos, Jasmine; Pannu, Hamreet; Lapp, Nathan; Liu, Di; Gin, Jennifer W; Chen, Yan; Petzold, Christopher J; Gladden, John M; Keasling, Jay D; Chang, Jeff H; Weisberg, Alexandra J; Shih, Patrick M

Author Correction: Binary vector copy number engineering improves Agrobacterium-mediated transformation

作者更正:二进制载体拷贝数工程可提高农杆菌介导的转化效率

Szarzanowicz, Matthew J; Waldburger, Lucas M; Busche, Michael; Geiselman, Gina M; Kirkpatrick, Liam D; Kehl, Alexander J; Tahmin, Claudine; Kuo, Rita C; McCauley, Joshua; Pannu, Hamreet; Cui, Ruoming; Liu, Shuying; Hillson, Nathan J; Brunkard, Jacob O; Keasling, Jay D; Gladden, John M; Thompson, Mitchell G; Shih, Patrick M

Quantitative dissection of Agrobacterium T-DNA expression in single plant cells reveals density-dependent synergy and antagonism.

对单个植物细胞中农杆菌 T-DNA 表达的定量分析揭示了密度依赖性的协同和拮抗作用

Alamos Simon, Szarzanowicz Matthew J, Thompson Mitchell G, Stevens Danielle M, Kirkpatrick Liam D, Dee Amanda, Pannu Hamreet, Cui Ruoming, Liu Shuying, Nimavat Monikaben, Krasileva Ksenia, Baidoo Edward E K, Shih Patrick M

Binary vector copy number engineering improves Agrobacterium-mediated transformation.

二元载体拷贝数工程可提高农杆菌介导的转化效率

Szarzanowicz Matthew J, Waldburger Lucas M, Busche Michael, Geiselman Gina M, Kirkpatrick Liam D, Kehl Alexander J, Tahmin Claudine, Kuo Rita C, McCauley Joshua, Pannu Hamreet, Cui Ruoming, Liu Shuying, Hillson Nathan J, Brunkard Jacob O, Keasling Jay D, Gladden John M, Thompson Mitchell G, Shih Patrick M