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801por Negruk, Valentine“…In general, the unique ORFs revealed very low homology to known closely related legumes, but several sequence homologies were found between V. faba, Beta vulgaris, Nicotiana tabacum, Vitis vinifera, and even the monocots Oryza sativa and Zea mays. …”
Publicado 2013
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802“…We show that recombinant Tobacco mosaic virus (TMV) containing B. cockerelli sequences can efficiently infect and generate small interfering RNAs in tomato (Solanum lycopersicum), tomatillo (Physalis philadelphica) and tobacco (Nicotiana tabacum) plants, and more importantly delivery of interfering sequences via TMV induces RNAi effects, as measured by actin and V-ATPase mRNA reductions, in B. cockerelli feeding on these plants. …”
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803por Rusconi, Fabio, Simeoni, Fabio, Francia, Priscilla, Cominelli, Eleonora, Conti, Lucio, Riboni, Matteo, Simoni, Laura, Martin, Cathie R., Tonelli, Chiara, Galbiati, Massimo“…Here, the activity of the full-length and minimal AtMYB60 promoters is reported in rice (Oryza sativa), tobacco (Nicotiana tabacum), and tomato (Solanum lycopersicum), using a reporter gene approach. …”
Publicado 2013
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804por Macková, Hana, Hronková, Marie, Dobrá, Jana, Turečková, Veronika, Novák, Ondřej, Lubovská, Zuzana, Motyka, Václav, Haisel, Daniel, Hájek, Tomáš, Prášil, Ilja Tom, Gaudinová, Alena, Štorchová, Helena, Ge, Eva, Werner, Tomáš, Schmülling, Thomas, Vanková, Radomíra“…Responses to drought, heat, and combined stress were compared in tobacco (Nicotiana tabacum L.) plants ectopically expressing the cytokinin oxidase/dehydrogenase CKX1 gene of Arabidopsis thaliana L. under the control of either the predominantly root-expressed WRKY6 promoter or the constitutive 35S promoter, and in the wild type. …”
Publicado 2013
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805por Amoabeng, Blankson W., Gurr, Geoff M., Gitau, Catherine W., Nicol, Helen I., Munyakazi, Louis, Stevenson, Phil C.“…Field cage and open field experiments were conducted to evaluate the insecticidal potential of nine common Ghanaian plants: goat weed, Ageratum conyzoides (Asteraceae), Siam weed, Chromolaena odorata (Asteraceae), Cinderella weed, Synedrella nodiflora (Asteraceae), chili pepper, Capsicum frutescens (Solanaceae), tobacco, Nicotiana tabacum (Solanaceae) cassia, Cassia sophera (Leguminosae), physic nut, Jatropha curcas (Euphorbiaceae), castor oil plant, Ricinus communis (Euphorbiaceae) and basil, Ocimum gratissimum (Lamiaceae). …”
Publicado 2013
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806por Laird, Janet, McInally, Carol, Carr, Craig, Doddiah, Sowjanya, Yates, Gary, Chrysanthou, Elina, Khattab, Ahmed, Love, Andrew J., Geri, Chiara, Sadanandom, Ari, Smith, Brian O., Kobayashi, Kappei, Milner, Joel J.“…When transiently co-expressed with tomato bushy stunt virus P19, an elicitor of programmed cell death in Nicotiana tabacum, WT P6 suppressed the hypersensitive response, but three mutants, two with deletions within the distal end of domain D-I and one involving the N-terminal nuclear export signal (NES), were unable to do so. …”
Publicado 2013
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807por Liang, Yan, Basu, Debarati, Pattathil, Sivakumar, Xu, Wen-liang, Venetos, Alexandra, Martin, Stanton L., Faik, Ahmed, Hahn, Michael G., Showalter, Allan M.“…We previously identified Arabidopsis thaliana FUT4 and FUT6 genes as AGP-specific fucosyltransferases (FUTs) based on their enzymatic activities when heterologously expressed in tobacco (Nicotiana tabacum) BY2 suspension-cultured cells. Here, the functions of FUT4 and FUT6 and the physiological roles of fucosylated AGPs were further investigated using Arabidopsis fut4, fut6, and fut4/fut6 mutant plants. …”
Publicado 2013
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808“…Qualitative and quantitative analysis from GUS assay showed that these promoters were functional and conferred a specific activity in tobacco seedlings (Nicotiana tabacum), tomato fruits (Solanum lycopersicum) and banana fruits (Musa acuminata). …”
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809por Personat, José-María, Tejedor-Cano, Javier, Prieto-Dapena, Pilar, Almoguera, Concepción, Jordano, Juan“…Heat Shock Factor A9 (HaHSFA9) enhanced seed longevity in transgenic tobacco (Nicotiana tabacum L.). In addition, the overexpression of HaHSFA9 in vegetative organs conferred tolerance to drastic levels of dehydration and oxidative stress. …”
Publicado 2014
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810por Szatmári, Ágnes, Zvara, Ágnes, Móricz, Ágnes M., Besenyei, Eszter, Szabó, Erika, Ott, Péter G., Puskás, László G., Bozsó, Zoltán“…Our aim was to reveal those PTI-related genes of tobacco (Nicotiana tabacum) that could possibly play a role in the protection of the plant from disease. …”
Publicado 2014
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811por Wu, Rongmei, Wang, Tianchi, McGie, Tony, Voogd, Charlotte, Allan, Andrew C., Hellens, Roger P., Varkonyi-Gasic, Erika“…The flowering time was not affected in day-neutral and photoperiod-responsive Nicotiana tabacum cultivars, but anthesis and seed germination were significantly delayed. …”
Publicado 2014
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812por Vanhercke, Thomas, El Tahchy, Anna, Liu, Qing, Zhou, Xue-Rong, Shrestha, Pushkar, Divi, Uday K, Ral, Jean-Philippe, Mansour, Maged P, Nichols, Peter D, James, Christopher N, Horn, Patrick J, Chapman, Kent D, Beaudoin, Frederic, Ruiz-López, Noemi, Larkin, Philip J, de Feyter, Robert C, Singh, Surinder P, Petrie, James R“…Here, we report the accumulation of more than 15% TAG (17.7% total lipids) by dry weight in Nicotiana tabacum (tobacco) leaves by the co-expression of three genes involved in different aspects of TAG production without severely impacting plant development. …”
Publicado 2014
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813por Matern, Sanja, Peskan-Berghoefer, Tatjana, Gromes, Roland, Kiesel, Rebecca Vazquez, Rausch, Thomas“…This study explored the impact of elevated glutathione content on the cytosolic redox potential and on early defence signalling at the level of mitogen-activated protein kinases (MAPKs), as well as on subsequent defence reactions, including changes in salicylic acid (SA) content, pathogenesis-related gene expression, callose depositions, and the hypersensitive response. Wild-type (WT) Nicotiana tabacum L. and transgenic high-glutathione lines (HGL) were transformed with the cytosol-targeted sensor GRX1-roGFP2 to monitor the cytosolic redox state. …”
Publicado 2015
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814por Lin, Ching-Ping, Ko, Chia-Yun, Kuo, Ching-I, Liu, Mao-Sen, Schafleitner, Roland, Chen, Long-Fang Oliver“…A combination of bioinformatics and experimental methods revealed that the plastid-encoded RNA polymerase-transcribed genes psbF and ndhA are affected by transcriptional slippage in mungbean and in main lineages of land plants, including three dicots (Glycine max, Brassica rapa, and Nicotiana tabacum), two monocots (Oryza sativa and Zea mays), two gymnosperms (Pinus taeda and Ginkgo biloba) and one moss (Physcomitrella patens). …”
Publicado 2015
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815“…In the present study, the effect of Zn(2+) on Al(3+)-induced superoxide generation in the cell suspension cultures of tobacco (Nicotiana tabacum L., cell-line, BY-2) and rice (Oryza sativa L., cv. …”
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816“…We show that strain 2P24 deploys a harpin homolog protein, RspZ1, to elicit a hypersensitive response when infiltrated into Nicotiana tabacum cv. xanthi leaves with protein that is partially purified, and by complementing the hrpZ1 mutation of pHIR11. …”
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817por Dinesh, Diwakar Singh, Kumari, Seema, Pandit, Vibhishan, Kumar, Jainendra, Kumari, Nisha, Kumar, Prahlad, Hassan, Faizan, Kumar, Vijay, Das, Pradeep“…RESULTS: Adults and larvae of sandflies exposed to the aqueous extract of Nicotiana tabacum resulted in 100 per cent mortality. The hexane extract of Clerodendrum infortunatum was found to kill 77 per cent adults but was ineffective against larvae. …”
Publicado 2015
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818por Borghi, Lorenzo, Liu, Guo-Wei, Emonet, Aurélia, Kretzschmar, Tobias, Martinoia, Enrico“…At present, the only characterized SL transporters are the ABCG protein PLEIOTROPIC DRUG RESISTANCE 1 from Petunia axillaris (PDR1) and, in less detail, its close homologue from Nicotiana tabacum PLEIOTROPIC DRUG RESISTANCE 6 (PDR6). …”
Publicado 2016
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819“…The class of Nictaba-like lectins (NLL) groups all proteins with homology to the tobacco (Nicotiana tabacum) lectin, known as a stress-inducible lectin. …”
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820por Yang, Liming, Li, Junying, Ji, Jianhui, Li, Ping, Yu, Liangliang, Abd_Allah, Elsayed F., Luo, Yuming, Hu, Liwei, Hu, Xiangyang“…Environmental stress elevates the level of jasmonic acid (JA) and activates the biosynthesis of nicotine and related pyridine alkaloids in tobacco (Nicotiana tabacum L.) by up-regulating the expression of putrescine N-methyltransferase 1 (NtPMT1), which encodes a putrescine N-methyl transferase that catalyzes nicotine formation. …”
Publicado 2016
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