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841por 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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842por Sierro, N., Battey, J. N. D., Bovet, L., Liedschulte, V., Ouadi, S., Thomas, J., Broye, H., Laparra, H., Vuarnoz, A., Lang, G., Goepfert, S., Peitsch, M. C., Ivanov, N. V.“…BACKGROUND: Nicotiana rustica (Aztec tobacco), like common tobacco (Nicotiana tabacum), is an allotetraploid formed through a recent hybridization event; however, it originated from completely different progenitor species. …”
Publicado 2018
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843por 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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844por Boccardo, Noelia Ayelen, Segretin, María Eugenia, Hernandez, Ingrid, Mirkin, Federico Gabriel, Chacón, Osmani, Lopez, Yunior, Borrás-Hidalgo, Orlando, Bravo-Almonacid, Fernando Félix“…The advantages include the possibilities to express polycistronic RNAs, to obtain higher protein expression levels, and the impeded gene flow due to the maternal inheritance of the plastome. We transformed Nicotiana tabacum plastids to co-express the tobacco PR proteins AP24 and β-1,3-glucanase. …”
Publicado 2019
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845“…We further transformed the plastid genome of the M. sexta host plant, Nicotiana tabacum, to produce this long dsRNA in its plastids and performed bioassays with M. sexta larvae on the transplastomic plants. …”
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846“…The aim of this study was to examine the effect of different sizes and concentrations of iron oxide nanoparticles [(Fe(3)O(4)) NPs] on morphological, physiological, biochemical, and ultrastructural parameters in tobacco (Nicotiana tabacum var.2 Turkish). RESULTS: Lengths of shoots and roots of 5 nm-treated plants were significantly decreased in all nanoparticle-treated plants compared to control plants or plants treated with any concentration of 10 or 20 nm nanoparticles. …”
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847por Schiermeyer, Andreas, Schneider, Katja, Kirchhoff, Janina, Schmelter, Thomas, Koch, Natalie, Jiang, Ke, Herwartz, Denise, Blue, Ryan, Marri, Pradeep, Samuel, Pon, Corbin, David R., Webb, Steven R., Gonzalez, Delkin O., Folkerts, Otto, Fischer, Rainer, Schinkel, Helga, Ainley, W. Michael, Schillberg, Stefan“…The ETIP cassette was introduced into Nicotiana tabacum BY‐2 suspension cells to generate target cell lines containing a single copy locus of the transgene construct. …”
Publicado 2019
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848“…The six most frequently mentioned therapeutically important plants were Nicotiana tabacum, Solanum incanum, Carissa spinanrum, Calpurnia aurea, Croton macrostachyus and Cynodon dactylon. …”
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849por Ahmad, Faheem, Iqbal, Naeem, Zaka, Syed Muhammad, Qureshi, Muhammad Kamran, Saeed, Qamar, Khan, Khalid Ali, Ghramh, Hamed A., Ansari, Mohammad Javed, Jaleel, Waqar, Aasim, Muhammad, Awar, Marryam Bakhat“…Allium sativum (Alliaceae), Zingiber officinale (Zingiberaceae), Cymbopogon citratus (Poaceae), Eucalyptus globulus (Myrtaceae), Nicotiana tabacum (Solanaceae), and Azadirachta indica (Meliaceae) against T. castaneum infesting stored wheat, rice, corn and gram pulse. …”
Publicado 2019
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850“…To gain insight into the molecular mechanisms underpinning tobacco (Nicotiana tabacum) tolerance to drought stress, we integrated anatomical, physiological, and proteomic analyses of drought-tolerant (Yuyan6, [Y6]) and -sensitive (Yunyan87 [Y87]) varieties. …”
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851por Phambala, Kelita, Tembo, Yolice, Kasambala, Trust, Kabambe, Vernon H., Stevenson, Philip C., Belmain, Steven R.“…In contact toxicity tests, the highest larval mortality was obtained from Nicotiana tabacum (66%) and Lippia javanica (66%). Similarly, in a feeding bioassay L. javanica (62%) and N. tabacum (60%) exhibited high larval mortality at the highest concentration evaluated (10% w/v). …”
Publicado 2020
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852por Meacham-Hensold, Katherine, Fu, Peng, Wu, Jin, Serbin, Shawn, Montes, Christopher M, Ainsworth, Elizabeth, Guan, Kaiyu, Dracup, Evan, Pederson, Taylor, Driever, Steven, Bernacchi, Carl“…Using field-grown Nicotiana tabacum with genetically altered photosynthetic pathways over two growing seasons (2017 and 2018), we built predictive models for eight photosynthetic parameters and pigment traits. …”
Publicado 2020
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853por Zhong, Chunmei, Tang, Yi, Pang, Bin, Li, Xukun, Yang, Yuping, Deng, Jing, Feng, Chengyong, Li, Lingfei, Ren, Guiping, Wang, Yaqin, Peng, Jianzong, Sun, Shulan, Liang, Shan, Wang, Xiaojing“…The overexpression of GhMYB1a in gerbera and tobacco (Nicotiana tabacum) resulted in decreased anthocyanin accumulation and increased accumulation of flavonols by upregulating the structural genes involved in flavonol biosynthesis. …”
Publicado 2020
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854por Jayawardhane, Jayamini, Cochrane, Devin W., Vyas, Poorva, Bykova, Natalia V., Vanlerberghe, Greg C., Igamberdiev, Abir U.“…To investigate the role(s) of AOX under different oxygen conditions, wild-type (WT) Nicotiana tabacum plants were compared with AOX knockdown and overexpression plants under normoxia, hypoxia (near-anoxia), and during a reoxygenation period following hypoxia. …”
Publicado 2020
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855por Wang, Yi, Wang, Chen, Rajaofera, Mamy Jayne Nelly, Zhu, Li, Liu, Wenbo, Zheng, Fucong, Miao, Weiguo“…Its promoter function was verified with transient transformations (Agrobacterium tumefaciens-mediated transformation, ATMT) in Nicotiana tabacum cv. Xanthi nc. The analysis of the transcription range showed that WY7 could regulate GUS expression in both monocots (Zea mays Linn and Oryza sativa L. spp. …”
Publicado 2020
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856por Jin, Jingjing, Xu, Yalong, Lu, Peng, Chen, Qiansi, Liu, Pingping, Wang, Jinbang, Zhang, Jianfeng, Li, Zefeng, Yang, Aiguo, Li, Fengxia, Cao, Peijian“…Tobacco (Nicotiana tabacum) is considered as the model plant for alkaloid research, of which nicotine accounts for 90%. …”
Publicado 2020
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857“…RESULTS: We have expressed the mouse pro-apoptotic protein Bid in Arabidopsis thaliana and in Nicotiana tabacum. We did not obtain any transformed plant constitutively expressing the truncated protein (tBid—i.e. the caspase-activated form) whereas ectopic expression of the full-length protein (flBid) does not interfere with growth and development of the transformed plants. …”
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858“…Black shank, caused by Phytophthora nicotianae, is a destructive soil-borne disease in tobacco (Nicotiana tabacum L.). The aim of the present study was to investigate the activity and composition of the root exudates from resistant and susceptible tobacco cultivars. …”
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859por Weiller, Florent, Gerber, Lorenz, Trygg, Johan, Fangel, Jonatan U., Willats, William G.T., Driouich, Azeddine, Vivier, Melané A., Moore, John P.“…The expression of Vitis vinifera polygalacturonase inhibiting protein 1 (VviPGIP1) in Nicotiana tabacum has been linked to modifications at the cell wall level. …”
Publicado 2020
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860por Zhao, Qiang, Hu, Ri‐Sheng, Liu, Dan, Liu, Xin, Wang, Jie, Xiang, Xiao‐Hua, Li, Yang‐Yang“…Here, we isolated an APETALA2/ETHYLENE‐RESPONSIVE FACTOR (AP2/ERF) domain‐containing transcription factor (TF), NtERF172, which was strongly induced by drought, abscisic acid (ABA) and H(2)O(2), from tobacco (Nicotiana tabacum) by yeast one‐hybrid screening. NtERF172 localized to the nucleus and acted as a transcriptional activator. …”
Publicado 2020
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