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3401por Docimo, Teresa, Francese, Gianluca, Ruggiero, Alessandra, Batelli, Giorgia, De Palma, Monica, Bassolino, Laura, Toppino, Laura, Rotino, Giuseppe L., Mennella, Giuseppe, Tucci, Marina“…Transient overexpression in Nicotiana benthamiana leaves of SmMyb1 and of a C-terminal SmMyb1 truncated form (SmMyb1Δ9) resulted in anthocyanin accumulation only of SmMyb1 agro-infiltrated leaves. …”
Publicado 2016
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3402por Stonebloom, Solomon, Ebert, Berit, Xiong, Guangyan, Pattathil, Sivakumar, Birdseye, Devon, Lao, Jeemeng, Pauly, Markus, Hahn, Michael G., Heazlewood, Joshua L., Scheller, Henrik Vibe“…To characterize a loss-of-function phenotype for PAGR, the Nicotiana benthamiana orthologs, NbPAGR-A and B, were transiently silenced using Virus Induced Gene Silencing. …”
Publicado 2016
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3403por Hafidh, Said, Potěšil, David, Fíla, Jan, Čapková, Věra, Zdráhal, Zbyněk, Honys, David“…Further, we show that regulators of the endoplasmic reticulum–trans-Golgi network protein secretory pathway control secretion of Nicotiana tabacum Pollen tube-secreted cysteine-rich protein 2 and Lorelei-like GPI-anchor protein 3 and that a regulator of endoplasmic reticulum–trans-Golgi protein translocation is essential for pollen tube growth, pollen tube guidance and ovule-targeting competence. …”
Publicado 2016
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3404“…The method is based on a single extraction of 10–100 mg of tissue and allows a broad quantitative screening of metabolites optimized by their chemical characteristics and concentrations, thereby providing a high throughput analysis unbiased by the putative functional attributes of the metabolites. The tissues of Nicotiana attenuata which accumulate high levels of nicotine and diterpene glycosides, provide a challenging matrix that thwarts quantitative analysis; the analysis of various tissues of this plant are used to illustrate the robustness of the procedure. …”
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3405“…Recently, we elucidated the developmental role of tobacco (Nicotiana tabacum L.) NtTTG2 in association with 12 genes that putatively encode AUXIN RESPONSIVE FACTOR (ARF) proteins, including NtARF8, NtARF17, and NtARF19. …”
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3406“…Overexpression of MfPIP2-7 resulted in enhanced tolerance to freezing, chilling and NO(3)(−) deficiency in transgenic tobacco (Nicotiana tabacum L.) plants as compared with the wild type. …”
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3407por Huang, Wenjun, Khaldun, A. B. M., Chen, Jianjun, Zhang, Chanjuan, Lv, Haiyan, Yuan, Ling, Wang, Ying“…Transient reporter assay showed that EsMYBF1 strongly activated the promoters of EsF3H (flavanone 3-hydroxylase) and EsFLS (flavonol synthase), but not the promoters of EsDFRs (dihydroflavonol 4-reductase) and EsANS (anthocyanidin synthase) in transiently transformed Nicotiana benthamiana leaves. Both yeast two-hybrid assay and transient reporter assay validated EsMYBF1 to be independent of EsTT8, or AtTT8 bHLH regulators of the flavonoid pathway as cofactors. …”
Publicado 2016
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3408por Han, Bingying, Fu, Lili, Zhang, Dan, He, Xiuquan, Chen, Qiang, Peng, Ming, Zhang, Jiaming“…MeTPS1 was then transformed into tobacco (Nicotiana benthamiana). Results indicated that transgenic tobacco lines accumulated significant level of trehalose and possessed improved drought stress tolerance. …”
Publicado 2016
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3409por Boyle, Patrick C., Schwizer, Simon, Hind, Sarah R., Kraus, Christine M., De la Torre Diaz, Susana, He, Bin, Martin, Gregory B.“…We demonstrate this using both Arabidopsis protoplasts and stable transgenic Arabidopsis plants and we leverage Agrobacterium-mediated transient expression in Nicotiana benthamiana leaves as a means for high-throughput evaluation of candidate proteins. …”
Publicado 2016
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3410por Su, Yachun, Wang, Zhuqing, Liu, Feng, Li, Zhu, Peng, Qiong, Guo, Jinlong, Xu, Liping, Que, Youxiong“…Transient overexpression of ScGluD2 in Nicotiana benthamiana leaves induced a defense response and exhibited antimicrobial action on the tobacco pathogens Pseudomonas solanacearum and Botrytis cinerea, further demonstrating that ScGluD2 was related to the resistance to plant pathogens. …”
Publicado 2016
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3411por Yuan, Songli, Li, Rong, Wang, Lei, Chen, Haifeng, Zhang, Chanjuan, Chen, Limiao, Hao, Qingnan, Shan, Zhihui, Zhang, Xiaojuan, Chen, Shuilian, Yang, Zhonglu, Qiu, Dezhen, Zhou, Xinan“…Besides, evolutionary relationships analysis divided the cystatin genes from Arabidopsis thaliana, Nicotiana tabacum, rice, barley and four legume plants into three groups. …”
Publicado 2016
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3412por Dalman, Kerstin, Wind, Julia Johanna, Nemesio-Gorriz, Miguel, Hammerbacher, Almuth, Lundén, Karl, Ezcurra, Ines, Elfstrand, Malin“…However, transactivation studies of PaNAC03 and PaLAR3 in Nicotiana benthamiana showed that PaNAC03 activated PaLAR3A, suggesting that PaNAC03 does not act as an independent negative regulator of flavan-3-ol production through direct interaction with the target flavonoid biosynthetic genes. …”
Publicado 2017
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3413por Shukla, Mukund R., Singh, Amritpal S., Piunno, Kevin, Saxena, Praveen K., Jones, A. Maxwell P.“…Observations on morphology, chlorophyll content, and chlorophyll fluorescence based stress parameters from in vitro plants cultured under different light spectra with similar overall fluence rate indicated different responses in Nicotiana tabacum and Artemisia annua plantlets. This experiment validates the utility of 3D printing to design and test functional vessels and demonstrated that optimal light spectra for in vitro plant growth is species-specific. …”
Publicado 2017
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3414por Ji, Tuo, Li, Shuzhen, Huang, Meili, Di, Qinghua, Wang, Xiufeng, Wei, Min, Shi, Qinghua, Li, Yan, Gong, Biao, Yang, Fengjuan“…In this research, we characterized the roles of the cucumber phospholipase D alpha gene (PLDα, GenBank accession number EF363796) in growth and tolerance to short- and long-term salt stress in transgenic tobacco (Nicotiana tabacum). Fresh and dry weights of roots, PLD activity and content, mitogen activated protein kinase (MAPK) gene expression, Na(+)–K(+) homeostasis, expression of genes encoding ion exchange, reactive oxygen species (ROS) metabolism and osmotic adjustment substances were investigated in wild type (WT) and CsPLDα-overexpression tobacco lines grown under short- and long-term high salt (250 mM) stress. …”
Publicado 2017
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3415por Djami-Tchatchou, Arnaud T., Ncube, Efficient N., Steenkamp, Paul A., Dubery, Ian A.“…Here, we investigated both the mode of action and the complementarity of Aza and Hxa as priming agents in Nicotiana tabacum cells in support of enhanced defense. …”
Publicado 2017
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3416por Mei, Yuanyuan, Wright, Kathryn M., Haegeman, Annelies, Bauters, Lander, Diaz-Granados, Amalia, Goverse, Aska, Gheysen, Godelieve, Jones, John T., Mantelin, Sophie“…Transient expression assays in Nicotiana benthamiana indicated that GpSPRY-414-2 disrupts plant defenses. …”
Publicado 2018
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3417“…The purified RcCUT1 was shown to possess the cutinase activity and be able to induce necrosis, H(2)O(2) accumulation, and expression of defense-related genes when infiltrated into wheat and Nicotiana benthamiana leaves. In contrast, RcCUT1 protein with serine mutation at the first motif had no cutinase activity, consequently lost the ability to induce necrosis. …”
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3418por Shrestha, Pushkar, Hussain, Dawar, Mulder, Roger J., Taylor, Matthew C., Singh, Surinder P., Petrie, James R., Zhou, Xue-Rong“…In transiently expressing these LPAATs in Nicotiana benthamiana, a Mortierella alpina LPAAT had the highest substrate specificity for accumulating DHA onto oleoyl-lysophosphatidic acid (oleoyl-LPA), while the plant LPAATs tested showed lower preference for DHA. …”
Publicado 2018
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3419por Cao, Feng Yi, DeFalco, Thomas A., Moeder, Wolfgang, Li, Bo, Gong, Yunchen, Liu, Xiao-Min, Taniguchi, Masatoshi, Lumba, Shelley, Toh, Shigeo, Shan, Libo, Ellis, Brian, Desveaux, Darrell, Yoshioka, Keiko“…ERF8 overexpression induced programmed cell death (PCD) in Arabidopsis and Nicotiana benthamiana. This PCD was salicylic acid (SA)-independent, suggesting that ERF8 acts downstream or independent of SA. …”
Publicado 2018
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3420por Sun, Tingting, Liu, Feng, Wang, Wenju, Wang, Ling, Wang, Zhuqing, Li, Jing, Que, Youxiong, Xu, Liping, Su, Yachun“…Subcellular localization experiments showed that the ScCAT2 protein was distributed in the cytoplasm, plasma membrane, and nucleus of Nicotiana benthamiana epidermal cells. Quantitative real-time polymerase chain reaction (qRT-PCR) analysis indicated that the ScCAT2 gene was ubiquitously expressed in sugarcane tissues, with expression levels from high to low in stem skin, stem pith, roots, buds, and leaves. …”
Publicado 2018
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