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

Stable Inheritance of Transgene and Yellow Fluorescent Protein Gene Expression in Progeny of Transgenic Cacao (Theobroma cacao) Plants

转基因可可(Theobroma cacao)植株后代中转基因和黄色荧光蛋白基因表达的稳定遗传

Austin, George; Jones, Jesse; Stevens, Abigail; Zhang, Elaine; Thompson, Taylor; Gomez, Michael; Vrla, Geoffrey; Oh, Youngbin; Marelli, Jean-Philippe; Jones, Carl M; Staskawicz, Brian; Cho, Myeong-Je

Gene editing of the E3 ligase PIRE1 fine-tunes reactive oxygen species production for enhanced bacterial disease resistance in tomato.

通过对 E3 连接酶 PIRE1 进行基因编辑,可以微调活性氧的产生,从而增强番茄对细菌性疾病的抵抗力

Castro Bardo, Baik Suji, Tran Megann, Zhu Jie, Li Tianrun, Tang Andrea, Aoun Nathalie, Blundell Alison C, Gomez Michael, Zhang Elaine, Cho Myeong-Je, Lowe-Power Tiffany, Siddique Shahid, Staskawicz Brian, Coaker Gitta

Heritable virus-induced germline editing in tomato

番茄中可遗传的病毒诱导的种系编辑

Oh, Youngbin; Nagalakshmi, Ugrappa; Dahlbeck, Douglas; Koehler, Naio; Cho, Myeong-Je; Dinesh-Kumar, Savithramma P; Staskawicz, Brian J

Understanding Callus Types in Maize by Genetic Mapping and Transcriptional Profiling

通过基因定位和转录组分析了解玉米愈伤组织类型

Lin, Guifang; Liu, Yan; Tamang, Tej Man; Qin, Yang; Zhao, Mingxia; Zheng, Jun; Wang, Guoying; Wei, Hairong; Park, Sunghun; Cho, Myeong-Je; White, Frank F; Liu, Yunjun; Liu, Sanzhen

Multiplexed CRISPR-Cas9 mutagenesis of rice PSBS1 noncoding sequences for transgene-free overexpression

利用CRISPR-Cas9技术对水稻PSBS1非编码序列进行多重诱变,实现无转基因过表达

Patel-Tupper, Dhruv; Kelikian, Armen; Leipertz, Anna; Maryn, Nina; Tjahjadi, Michelle; Karavolias, Nicholas G; Cho, Myeong-Je; Niyogi, Krishna K

Transporter editing in cassava indicates local production of cyanogenic glucosides in, and export from, cassava roots

木薯中的转运蛋白编辑表明木薯根部能够局部产生氰苷,并将其输出。

Lieberman, Samantha E; Gueorguieva, Gloria-Alexandra; Gill, Baljeet K; Litvak, Lillian; Gallegos Cruz, Ana; Lyons, Jessica B; Cho, Myeong-Je; Karavolias, Nicholas

CRISPR/Cas9-mediated editing of Bs5 and Bs5L in tomato leads to resistance against Xanthomonas

利用 CRISPR/Cas9 介导的基因编辑技术对番茄中的 Bs5 和 Bs5L 基因进行编辑,可使其对黄单胞菌产生抗性。

Ortega, Arturo; Seong, Kyungyong; Schultink, Alex; de Toledo Thomazella, Daniela Paula; Seo, Eunyoung; Zhang, Elaine; Pham, Julie; Cho, Myeong-Je; Dahlbeck, Douglas; Warren, Jacqueline; Minsavage, Gerald V; Jones, Jeffrey B; Sierra-Orozco, Edgar; Hutton, Samuel F; Staskawicz, Brian

Engineering quantitative stomatal trait variation and local adaptation potential by cis-regulatory editing

通过顺式调控编辑来调控气孔数量性状变异和局部适应潜力

Karavolias, Nicholas G; Patel-Tupper, Dhruv; Gallegos Cruz, Ana; Litvak, Lillian; Lieberman, Samantha E; Tjahjadi, Michelle; Niyogi, Krishna K; Cho, Myeong-Je; Staskawicz, Brian J

Engineering Brassica Crops to Optimize Delivery of Bioactive Products Postcooking

通过基因工程改造十字花科作物,优化烹饪后生物活性物质的输送

Barnum, Collin R; Cho, Myeong-Je; Markel, Kasey; Shih, Patrick M

Paralog editing tunes rice stomatal density to maintain photosynthesis and improve drought tolerance

旁系同源基因编辑调节水稻气孔密度,以维持光合作用并提高抗旱性

Karavolias, Nicholas G; Patel-Tupper, Dhruv; Seong, Kyungyong; Tjahjadi, Michelle; Gueorguieva, Gloria-Alexandra; Tanaka, Jaclyn; Gallegos Cruz, Ana; Lieberman, Samantha; Litvak, Lillian; Dahlbeck, Douglas; Cho, Myeong-Je; Niyogi, Krishna K; Staskawicz, Brian J