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3321“…The transient expression of StLecRK-IV.1 in Nicotiana benthamiana enhanced P. infestans leaf colonization significantly. …”
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3322“…Recently, a group of researchers followed the kinetics of infection of individual cells in leaves of Nicotiana tabacum plants using Tobacco etch virus (TEV) expressing either Venus or blue fluorescent protein (BFP). …”
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3323por Guyot, Valentin, Rajeswaran, Rajendran, Chu, Huong Cam, Karthikeyan, Chockalingam, Laboureau, Nathalie, Galzi, Serge, Mukwa, Lyna F. T., Krupovic, Mart, Kumar, P. Lava, Iskra-Caruana, Marie-Line, Pooggin, Mikhail M.“…BBTV and alphasatellite clones infected dicot Nicotiana benthamiana, followed by recovery and symptomless persistence of alphasatellite, and BBTV replication protein (Rep), but not alphasatellite Rep, induced leaf chlorosis. …”
Publicado 2022
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3324por Lu, Zhuchou, Qiu, Wenmin, Jin, Kangming, Yu, Miao, Han, Xiaojiao, He, Xiaoyang, Wu, Longhua, Wu, Chao, Zhuo, Renyin“…In a transient gene expression analysis involving Nicotiana benthamiana leaves, SpbZIP60 was localized in the nucleus. …”
Publicado 2022
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3325por Li, Ze, Zhang, Yi, Ren, Jie, Jia, Fenglian, Zeng, Hongmei, Li, Guangyue, Yang, Xiufen“…In our previous work, Nicotiana benthamiana ERF114 (NbERF114) was identified in a screen of genes differentially expressed in response to PevD1 infiltration. …”
Publicado 2022
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3326por Matsumura, Emilyn E., Guo, Fei, Boogers, Daan, van Oevelen, Dennis, Vu, Sandra T., Falk, Bryce W.“…These vectors were generated to express the reporter green fluorescent protein (GFP) in Nicotiana benthamiana leaves by taking advantage of the expression strategies used by CSDaV to produce its structural proteins. …”
Publicado 2022
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3327por Xue, Jinai, Gao, Huiling, Xue, Yinghong, Shi, Ruixiang, Liu, Mengmeng, Han, Lijun, Gao, Yu, Zhou, Yali, Zhang, Fei, Zhang, Haiping, Jia, Xiaoyun, Li, Runzhi“…Notably, transgenic tobacco (Nicotiana benthamiana) data showed that heterogeneous expression of GmDGAT3-2 resulted in a significant increase in seed oil and C18:1 levels but little change in contents of protein and starch compared to the EV-transformed tobacco plants. …”
Publicado 2022
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3328por Rosenberg, Yvonne J., Jiang, Xiaoming, Lees, Jonathan P., Urban, Lori A., Mao, Lingjun, Sack, Markus“…The present study utilized the Nicotiana benthamiana/p19 (N.b./p19) transient plant system to assess co-expression of two ER master regulators and 5 chaperones, crucial in the folding process, to enhance yields of three Env SOSIPs, single chain BG505 SOSIP.664 gp140, CH505TF.6R.SOSIP.664.v4.1 and CH848-10.17-DT9. …”
Publicado 2022
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3329por Zhang, Xin, Ren, Chao, Xue, Yunyun, Tian, Yuexia, Zhang, Huiqi, Li, Na, Sheng, Cong, Jiang, Huifang, Bai, Dongmei“…Transient expression analysis in Nicotiana benthamiana found that miR160, miR482, and miR2118 may play positive roles, and miR396, miR162, and miR1511 play negative roles in the regulation of peanut cold tolerance. …”
Publicado 2022
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3330por Qi, Fangting, Liu, Yuting, Luo, Yiliu, Cui, Yumeng, Lu, Chenfei, Li, Hao, Huang, He, Dai, Silan“…Further functional analysis verified that ScAG inhibits anthocyanin accumulation in tobacco (Nicotiana tabacum). However, virus-induced gene silencing (VIGS) experiments showed that silencing of ScAG and ScAGL11 increases anthocyanin content in cineraria leaves. …”
Publicado 2022
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3331por Zhang, Qian, Chen, Shuxian, Bao, Yazhou, Wang, Dongmei, Wang, Weijie, Chen, Rubin, Li, Yixin, Xu, Guangyuan, Feng, Xianzhong, Liang, Xiangxiu, Dou, Daolong“…Next, we successfully cloned 60 GmMRLKs and subsequently characterized their roles in plant immunity by transiently expressing them in Nicotiana benthamiana, a model plant widely used to study host-pathogen interactions. …”
Publicado 2022
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3332por Liu, Huawei, Jiang, Li, Wen, Zhifeng, Yang, Yingjun, Singer, Stacy D., Bennett, Dennis, Xu, Wenying, Su, Zhen, Yu, Zhifang, Cohn, Jonathan, Chae, Hyunsook, Que, Qiudeng, Liu, Yue, Liu, Chang, Liu, Zongrang“…In this study, we isolated a 1.2‐kb RS2‐9 insulator from the Oryza sativa (rice) genome that can, when interposed between an enhancer and promoter, efficiently block the activation function of both constitutive and floral organ‐specific enhancers in transgenic Arabidopsis and Nicotiana tabacum (tobacco). In the rice genome, the genes flanking RS2‐9 exhibit an absence of mutual transcriptional interactions, as well as a lack of histone modification spread. …”
Publicado 2021
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3333“…Here, art‐sRNAs designed against the magnesium chelatase subunit CHLI‐encoding SULFUR gene (NbSu) were agroinfiltrated in Nicotiana benthamiana leaves, and the induction of local and systemic silencing was analyzed phenotypically by monitoring the appearance of the characteristic bleached phenotype, as well as molecularly by analyzing art‐sRNA processing, accumulation and targeting activity and efficacy. …”
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3334por Zheng, Lilei, Qiu, Bingling, Su, Linlin, Wang, Hanlin, Cui, Xiuming, Ge, Feng, Liu, Diqiu“…The overexpression of PnWRKY9 in tobacco (Nicotiana tabacum) considerably increased the resistance to F. solani, whereas an RNAi-mediated decrease in the PnWRKY9 expression level in P. notoginseng leaves increased the susceptibility to F. solani. …”
Publicado 2022
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3335por Bernard, Guillaume, Buges, Julie, Delporte, Marianne, Molinié, Roland, Besseau, Sébastien, Bouchereau, Alain, Watrin, Amandine, Fontaine, Jean-Xavier, Mathiron, David, Berardocco, Solenne, Bassard, Solène, Quéro, Anthony, Hilbert, Jean-Louis, Rambaud, Caroline, Gagneul, David“…Additional experiments using Nicotiana benthamiana confirmed these findings. Expression of CiSHT2 alone promoted partially substituted spermine accumulation, and coexpression of CiSHT2 and CiSHT1 promoted synthesis and accumulation of the fully substituted spermine. …”
Publicado 2022
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3336por Dai, Yuan-feng, Wu, Xiao-mao, Wang, Han-cheng, Li, Wen-hong, Cai, Liu-ti, Li, Ji-xin, Wang, Feng, Sehar, Shafaque, Shamsi, Imran Haider“…Phyllospheric microbial composition of tobacco (Nicotiana tabacum L.) is contingent upon certain factors, such as the growth stage of the plant, leaf position, and cultivar and its geographical location, which influence, either directly or indirectly, the growth, overall health, and production of the tobacco plant. …”
Publicado 2022
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3337por Jiang, Yingli, Peng, Xiaojian, Zhang, Qin, Liu, Yuqing, Li, Aiqi, Cheng, Beijiu, Wu, Jiandong“…A reduction in ROS production was also observed in leaves of Nicotiana benthamiana showing transient co-expression of OsSKL2 with OsASR1. …”
Publicado 2022
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3338“…Here, we investigated the factors that shape fungal community structure and assembly in three compartment niches (the bulk soil, rhizosphere, and rhizoplane) associated with tobacco (Nicotiana tabacum L.), with four soil types tested under controlled greenhouse conditions. …”
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3339“…The duplication of an ancestral QPT gene in Nicotiana species has resulted in two closely related QPT gene paralogs: QPT1 which is expressed at modest levels throughout the plant, and QPT2 which is coordinately regulated with genes dedicated to alkaloid biosynthesis. …”
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3340por Jiang, Yonglei, Zhang, Ruqiang, Zhang, Cuiping, Su, Jiaen, Cong, Wen-Feng, Deng, Xiaopeng“…We conducted a 12-year tobacco (Nicotiana tabacum L.)-maize crop rotation field experiment in Yanhe experimental station, China to examine the yields and qualities of tobacco, soil nutrients, and extracellular enzyme activities associated with carbon, nitrogen, and phosphorus cycles in response to different fertilization treatments. …”
Publicado 2022
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