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3021“…Finally, the determination of SPI-1 mutants to trigger innate immunity in Nicotiana benthamiana showed that 2P24ΔinvE-C reduced the ability to induce the production of reactive oxygen species compared with the wild type strain 2P24.…”
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3022“…Here, we demonstrate the pro-viral role of a selective autophagic receptor NbNBR1 in geminivirus-infected Nicotiana benthamiana plants. The βC1 protein encoded by tomato yellow leaf curl China betasatellite (TYLCCNB) that is associated with tomato yellow leaf curl China virus (TYLCCNV) enhanced the expression level of NbNBR1. …”
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3023por Hunziker, Lukas, Tarallo, Mariana, Gough, Keiko, Guo, Melissa, Hargreaves, Cathy, Loo, Trevor S., McDougal, Rebecca L., Mesarich, Carl H., Bradshaw, Rosie E.“…We discovered DsCEs that trigger cell death in the angiosperm Nicotiana spp., indicative of a hypersensitive defence response and suggesting their recognition by immune receptors in non-host plants. …”
Publicado 2021
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3024por Ge, Chunxia, Wang, Yi-Ge, Lu, Shouping, Zhao, Xiang Yu, Hou, Bing-Kai, Balint-Kurti, Peter J., Wang, Guan-Feng“…Functional analysis by transient co-expression in Nicotiana benthamiana showed that ZmUGT9250 and ZmUGT5174, but not ZmUGT9256 and ZmUGT8707, partially suppressed the HR triggered by Rp1-D21 or its N-terminal coiled-coil signaling domain (CC(D21)). …”
Publicado 2021
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3025por Nouri, Eva, Surve, Rohini, Bapaume, Laure, Stumpe, Michael, Chen, Min, Zhang, Yunmeng, Ruyter-Spira, Carolien, Bouwmeester, Harro, Glauser, Gaëtan, Bruisson, Sébastien, Reinhardt, Didier“…Here, we test the hypothesis that P(i) may interfere with AM symbiosis via the phytohormone gibberellic acid (GA) in the Solanaceous model systems Petunia hybrida and Nicotiana tabacum. Indeed, we find that GA is inhibitory to AM symbiosis and that P(i) may cause GA levels to increase in mycorrhizal roots. …”
Publicado 2021
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3026por Lacombe, Severine, Bangratz, Martine, Ta, Hoang Anh, Nguyen, Thanh Duc, Gantet, Pascal, Brugidou, Christophe“…We demonstrated for the first time that two amiRs targeting conserved regions of RRSV genomes could be transgenically produced in Nicotiana benthamiana and in rice for a single precursor. …”
Publicado 2021
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3027por Li, De-Sen, Hua, Juan, Luo, Shi-Hong, Liu, Yan-Chun, Chen, Yue-Gui, Ling, Yi, Guo, Kai, Liu, Yan, Li, Sheng-Hong“…Their structures were elucidated by extensive nuclear magnetic resonance spectroscopy. Nicotiana benthamiana transiently expressing CcTPS1 also produced the diterpenoid and sesquiterpenoids, demonstrating the enzyme’s promiscuity in planta. …”
Publicado 2021
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3028por Yin, Qinggang, Zhang, Jing, Wang, Shuhui, Cheng, Jintang, Gao, Han, Guo, Cong, Ma, Lianbao, Sun, Limin, Han, Xiaoyan, Chen, Shilin, Liu, An“…The IAA modification of GbNGT1 and GbGH3.5 was verified by transient expression assay in Nicotiana benthamiana. The effect of GbNGT1 on IAA distribution promotes root growth in Arabidopsis thaliana.…”
Publicado 2021
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3029por Osdaghi, Ebrahim, Jones, Jeffrey B., Sharma, Anuj, Goss, Erica M., Abrahamian, Peter, Newberry, Eric A., Potnis, Neha, Carvalho, Renato, Choudhary, Manoj, Paret, Mathews L., Timilsina, Sujan, Vallad, Gary E.“…Alternative solanaceous and nonsolanaceous hosts include Datura spp., Hyoscyamus spp., Lycium spp., Nicotiana rustica, Physalis spp., Solanum spp., Amaranthus lividus, Emilia fosbergii, Euphorbia heterophylla, Nicandra physaloides, Physalis pubescens, Sida glomerata, and Solanum americanum. …”
Publicado 2021
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3030Amplification of early drought responses caused by volatile cues emitted from neighboring tea plantspor Jin, Jieyang, Zhao, Mingyue, Gao, Ting, Jing, Tingting, Zhang, Na, Wang, Jingming, Zhang, Xianchen, Huang, Jin, Schwab, Wilfried, Song, Chuankui“…Exogenous application of ABA reduced the wilting of tea plants caused by MeSA exposure. Exposure of Nicotiana benthamiana to MeSA also led to severe wilting, indicating that the ability of drought-induced MeSA to reduce early drought tolerance in neighboring plants may be conserved in other plant species. …”
Publicado 2021
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3031por Zhang, Wanying, Li, Haiyang, Wang, Limin, Xie, Shunpei, Zhang, Yuan, Kang, Ruijiao, Zhang, Mengjuan, Zhang, Panpan, Li, Yonghui, Hu, Yanfeng, Wang, Min, Chen, Linlin, Yuan, Hongxia, Ding, Shengli, Li, Honglian“…Transient expression of CsSp1 in Nicotiana benthamiana inhibited lesion formation caused by Phytophthora capsici. …”
Publicado 2021
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3032por Wang, Xiao-Hui, Gao, Bo-Wen, Nakashima, Yu, Mori, Takahiro, Zhang, Zhong-Xiu, Kodama, Takeshi, Lee, Yuan-E, Zhang, Ze-Kun, Wong, Chin-Piow, Liu, Qian-Qian, Qi, Bo-Wen, Wang, Juan, Li, Jun, Liu, Xiao, Abe, Ikuro, Morita, Hiroyuki, Tu, Peng-Fei, Shi, She-Po“…Through biotransformation experiments using fluorine-labeled substrate, transient expression of PECPS in Nicotiana benthamiana, and knockdown of PECPS expression in A. sinensis calli, we demonstrate that the C(6)–C(5)–C(6) scaffold of diarylpentanoid is the common precursor of PECs, and PECPS plays a crucial role in PECs biosynthesis. …”
Publicado 2022
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3033por Jiang, Junmei, Chen, Jun, Luo, Liting, Wang, Lujie, Ouyang, Hao, Ren, Mingjian, Li, Xiangyang, Xie, Xin“…Furthermore, the transient expression of SbSGT1 in Nicotiana benthamiana indicated that treatment with exogenous auxin could inhibit SbSGT1 expression, both at the transcriptional and translational level, demonstrating that there exists an interaction between SbSGT1 and auxin.…”
Publicado 2022
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3034por König-Beihammer, Julia, Vavra, Ulrike, Shin, Yun-Ji, Veit, Christiane, Grünwald-Gruber, Clemens, Gillitschka, Yasmin, Huber, Jasmin, Hofner, Manuela, Vierlinger, Klemens, Mitteregger, Dieter, Weinhäusel, Andreas, Strasser, Richard“…Here, we performed an in vivo glycoengineering approach to produce recombinant variants of the SARS-CoV-2 receptor-binding domain (RBD) with blood group antigens in Nicotiana benthamiana plants. SARS-CoV-2 RBD and human glycosyltransferases for the blood group ABH antigen formation were transiently co-expressed in N. benthamiana leaves. …”
Publicado 2022
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3035por Liscombe, David K., Kamiyoshihara, Yusuke, Ghironzi, Jérémie, Kempthorne, Christine J., Hooton, Kevin, Bulot, Blandine, Kanellis, Vassili, McNulty, James, Lam, Nghi B., Nadeau, Louis Félix, Pautler, Michael, Tieman, Denise M., Klee, Harry J., Goulet, Charles“…Biosynthetic incorporation of stable isotope-labeled precursors into 2-isobutylthiazole and 2-phenylacetonitrile confirmed that cysteine provides the nitrogen atom for all nitrogenous volatiles in tomato fruit. Nicotiana benthamiana plants expressing SlTNH1 readily transformed synthetic 2-substituted tetrahydrothiazolidine-4-carboxylic acid substrates into a mixture of the corresponding 2-substituted oxime, nitro, and nitrile volatiles. …”
Publicado 2022
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3036“…The cassettes were transferred into tobacco, Nicotiana tabacum L. (Solanaceae), leaves by agroinfiltration technique. …”
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3037por Wang, Meng, Song, Xinxin, Guo, Shuaiqiang, Li, Peiyao, Xu, Zongchang, Xu, Hua, Ding, Anming, Ahmed, Rana Imtiaz, Zhou, Gongke, O’Neill, Malcom, Yang, Dahai, Kong, Yingzhen“…Here, we identified two Nicotiana tabacum genes that encode xyloglucan-specific xylosyltransferases (XXT), which we named NtXXT1 and NtXXT2. …”
Publicado 2022
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3038por Lu, Qiaoling, Huang, Yu, Wang, Hui, Wan, Meiyun, Lv, Jingang, Cheng, Xingge, Chen, Yuanhui, Cai, Weiwei, Yang, Sheng, Shen, Lei, Guan, Deyi, He, Shuilin“…CabZIP23 was originally found by immunoprecipitation-mass spectrometry to be an interacting protein of CabZIP63-GFP; it was upregulated by RSI and acted positively in pepper immunity against RSI by virus induced gene silencing in pepper plants, and transient overexpression in Nicotiana benthamiana plants. By chromatin immunoprecipitation (ChIP)-qPCR and electrophoresis mobility shift assay (EMSA), CabZIP23 was found to be directly regulated by CaWRKY40, and CabZIP63 was directly regulated by CabZIP23, forming a positive feedback loop. …”
Publicado 2022
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3039“…This result was confirmed by transiently expressing both genes in Nicotiana benthamiana followed by G7H infection. Both proteins localized in the chloroplast envelope as well as in the nucleus and cytoplasm. …”
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3040por Qin, Xin, Xue, Bowen, Tian, Haiyang, Fang, Chenjie, Yu, Jiarong, Chen, Cong, Xue, Qing, Jones, John, Wang, Xuan“…However, the subcellular localization and plasmolysis assay revealed that the unconventional secretory signal present on the Mi‐ISC‐1 is not recognized by the plant secretory pathway and that the effector was localized within the cytoplasm of plant cells, but not apoplast, when transiently expressed in Nicotiana benthamiana leaves by agroinfiltration. Ectopic expression of Mi‐ISC‐1 in N. benthamiana reduced expression of the PR1 gene and levels of salicylic acid (SA), and promoted infection by Phytophthora capsici. …”
Publicado 2021
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