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2881“…RiCRN1 accumulates during symbiosis establishment parallel to MtPT4, the gene coding for an arbuscule-specific phosphate transporter. Expression in Nicotiana benthamiana leaves and in Medicago truncatula roots suggest that RiCRN1 is not involved in cell death processes. …”
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2882por Huang, Qiulan, Li, Lin, Zheng, Minghui, Chen, Fang, Long, Hai, Deng, Guangbing, Pan, Zhifen, Liang, Junjun, Li, Qiao, Yu, Maoqun, Zhang, Haili“…Silencing of AeVTDC1 led to compromised immunity to CCN with more CCN intrusion into roots; while overexpression AeVTDC1 in Nicotiana tabacum dramatically enhanced the resistance of plants by reducing the knots formed on roots. …”
Publicado 2018
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2883por Chichester, Jessica A., Green, Brian J., Jones, R. Mark, Shoji, Yoko, Miura, Kazutoyo, Long, Carole A., Lee, Cynthia K., Ockenhouse, Christian F., Morin, Merribeth J., Streatfield, Stephen J., Yusibov, Vidadi“…This Pfs25 VLP-FhCMB vaccine candidate has been engineered and manufactured in Nicotiana benthamiana plants at pilot plant scale under current Good Manufacturing Practice guidelines. …”
Publicado 2018
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2884por Nishanth, M. J., Sheshadri, S. A., Rathore, Sudarshan Singh, Srinidhi, S., Simon, Bindu“…This was further confirmed in cross-species, wherein Nicotiana benthamiana leaves transiently-overexpressing CrCWIN2 showed significant upregulation of specialized-metabolism genes: NbPAL2, Nb4CL, NbCHS, NbF3H, NbANS, NbHCT and NbG10H. …”
Publicado 2018
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2885por Wang, Aijun, Pang, Linxiu, Wang, Na, Ai, Peng, Yin, Desuo, Li, Shuangcheng, Deng, Qiming, Zhu, Jun, Liang, Yueyang, Zhu, Jianqing, Li, Ping, Zheng, Aiping“…Furthermore, among the 131 candidate pathogen effectors identified according to their expression patterns and functionality, we validated two that trigger leaf cell death in Nicotiana benthamiana. In summary, we have revealed new molecular mechanisms involved in the evolution, biotrophy, and pathogenesis of T. horrida.…”
Publicado 2018
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2886por Naumann, Marcel, Hubberten, Hans-Michael, Watanabe, Mutsumi, Hänsch, Robert, Schöttler, Mark Aurel, Hoefgen, Rainer“…We characterized transgenic plants leading to co-suppression of the SIR gene in tobacco (Nicotiana tabacum cv. Samsun NN). Co-suppression resulted in reduced but not completely extinguished expression of SIR and in a reduction of SIR activity to about 20–50% of the activity in control plants. …”
Publicado 2018
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2887por Wang, Li, Liu, Yuhui, Feng, Shoujiang, Wang, Zhuoyu, Zhang, Jinwen, Zhang, Junlian, Wang, Di, Gan, Yantai“…Here, we determined the effect of Arabidopsis thaliana transporter gene (AtHKT1) on the K(+) status, Na(+)-induced toxicity, and salt tolerance in tobacco (Nicotiana tabacum L.). Six AtHKT1 transformed tobacco lines (T1, T2, … T6) were contrasted with a non-transgenic plantlet at the whole-plant and molecule levels. …”
Publicado 2018
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2888por Dang, Fengfeng, Lin, Jinhui, Xue, Baoping, Chen, Yongping, Guan, Deyi, Wang, Yanfeng, He, Shuilin“…CaWRKY27 overexpression impaired basal thermotolerance in tobacco (Nicotiana tabacum) and Arabidopsis thaliana, CaWRKY27-overexpressing plants had a lower survival rate under heat stress, accompanied by decreased expression of multiple thermotolerance-associated genes. …”
Publicado 2018
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2889por Wang, Haixia, Chen, Yanlin, Wu, Xingtong, Long, Zongshang, Sun, Chunlian, Wang, Hairong, Wang, Shumei, Birch, Paul R J, Tian, Zhendong“…Overexpression of StLRPK1 in stable transgenic potato or ectopic expression in Nicotiana benthamiana plants enhances P. infestans disease resistance, whereas RNA interference (RNAi) of StLRPK1 in potato decreases disease resistance. …”
Publicado 2018
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2890“…Using an agroinfiltration-based NMD assay in Nicotiana benthamiana, we identified two segments conferring NMD-resistance in the carmovirus Turnip crinkle virus (TCV) genome. …”
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2891por Guan, Deyi, Yang, Feng, Xia, Xiaoqin, Shi, Yuanyuan, Yang, Sheng, Cheng, Wei, He, Shuilin“…Transient overexpression of CaHSL1 in the mesophyll cells of Nicotiana benthamiana showed that CaHSL1 localizes throughout the cell, including the plasma membrane, cytoplasm, and the nucleus. …”
Publicado 2018
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2892por Thijs, Sofie, Witters, Nele, Janssen, Jolien, Ruttens, Ann, Weyens, Nele, Herzig, Rolf, Mench, Michel, Van Slycken, Stijn, Meers, Erik, Meiresonne, Linda, Vangronsveld, Jaco“…Biomass production and metal accumulation of pre-selected tobacco somaclonal variants (Nicotiana tabacum L.) and pre-selected sunflower mutants (Helianthus annuus L.) were investigated for two productivity years, while the phytoextraction potential of experimental poplar (Populus) and willow (Salix) in short rotation coppice (SRC) was assessed at the end of the second cutting cycle (after two times four growing seasons). …”
Publicado 2018
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2893por Bai, Ru, Luo, Yangyang, Wang, Lixin, Li, Jing, Wu, Kerun, Zhao, Guifang, Duan, Dong“…Significant differences in the structure and activity of the promoter of MYB14, but not MYB15 were identified between the two genotypes, following heterologous expression in Nicotiana benthamiana system and treatments with Al(3+) and UV-C. …”
Publicado 2018
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2894por Mathioudakis, Matthaios M., Khechmar, Souheyla, Owen, Carolyn A., Medina, Vicente, Ben Mansour, Karima, Tomaszewska, Weronika, Spanos, Theodore, Sarris, Panagiotis F., Livieratos, Ioannis C.“…In PepMV-infected and healthy Nicotiana benthamiana plants, NbTXND9 mRNA levels were comparable, and expression levels remained stable in both local and systemic leaves for 10 days post inoculation (dpi), as was also the case for catalase 1 (CAT1). …”
Publicado 2018
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2895por Irieda, Hiroki, Inoue, Yoshihiro, Mori, Masashi, Yamada, Kohji, Oshikawa, Yuu, Saitoh, Hiromasa, Uemura, Aiko, Terauchi, Ryohei, Kitakura, Saeko, Kosaka, Ayumi, Singkaravanit-Ogawa, Suthitar, Takano, Yoshitaka“…NIS1 from two Colletotrichum spp. suppressed the hypersensitive response and oxidative burst, both of which are induced by pathogen-derived molecules, in Nicotiana benthamiana. Magnaporthe oryzae NIS1 also suppressed the two defense responses, although this pathogen likely acquired the NIS1 gene via horizontal transfer from Basidiomycota. …”
Publicado 2019
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2896por Laughlin, Richard C., Madera, Rachel, Peres, Yair, Berquist, Brian R., Wang, Lihua, Buist, Sterling, Burakova, Yulia, Palle, Sreenath, Chung, Chungwon J., Rasmussen, Max V., Martel, Erica, Brake, David A., Neilan, John G., Lawhon, Sara D., Adams, L. Garry, Shi, Jishu, Marcel, Sylvain“…To address the issues of scalability, cost of production and immunogenicity, we have employed an Agrobacterium‐mediated transient expression platform in Nicotiana benthamiana and formulated the purified antigen in novel oil‐in‐water emulsion adjuvants. …”
Publicado 2018
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2897por Zhao, Jinping, Xu, Jingjing, Chen, Binghua, Cui, Weijun, Zhou, Zhongjing, Song, Xijiao, Chen, Zhuo, Zheng, Hongying, Lin, Lin, Peng, Jiejun, Lu, Yuwen, Deng, Zhiping, Chen, Jianping, Yan, Fei“…Rice stripe virus (RSV) is one of the most devastating viral pathogens in rice and can also cause the general chlorosis symptom in Nicotiana benthamiana plants. The chloroplast changes associated with chlorosis symptom suggest that RSV interrupts normal chloroplast functions. …”
Publicado 2019
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2898por Nogueira, Marilise, Enfissi, Eugenia M.A., Welsch, Ralf, Beyer, Peter, Zurbriggen, Matias D., Fraser, Paul D.“…Transient expression in Nicotiana benthamiana was then performed in order to assess the potential of the fusions in a plant system. …”
Publicado 2019
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2899por Boccardo, Noelia Ayelen, Segretin, María Eugenia, Hernandez, Ingrid, Mirkin, Federico Gabriel, Chacón, Osmani, Lopez, Yunior, Borrás-Hidalgo, Orlando, Bravo-Almonacid, Fernando Félix“…Transplastomic tobacco lines were characterized and subsequently challenged with Rhizoctonia solani, Peronospora hyoscyami f.sp. tabacina and Phytophthora nicotianae. Results showed that transplastomic plants expressing AP24 and β-1,3-glucanase are resistant to R. solani in greenhouse conditions and, furthermore, they are protected against P.hyoscyami f.sp. tabacina and P. nicotianae in field conditions under high inoculum pressure. …”
Publicado 2019
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2900“…RESULTS: We developed a rapid enhancer validation system based on Nicotiana benthamiana. A set of 12 intergenic and intronic enhancers, identified in Arabidopsis thaliana, were cloned into a vector containing a minimal 35S promoter and a luciferase reporter gene, and were then infiltrated into N. benthamiana leaves mediated by agrobacterium. …”
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