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3121por Silva, Pedro Ângelo, Ul-Rehman, Reiaz, Rato, Cláudia, Di Sansebastiano, Gian-Pietro, Malhó, Rui“…RESULTS: Using GFP-fusion constructs, we imaged the distribution of pollen-specific (AtSYP124) and non-pollen syntaxins (AtSYP121 and AtSYP122) in transiently transformed Nicotiana tabacum pollen tubes. All three proteins associate with the plasma membrane and with apical vesicles indicating a conserved action mechanism for all SYPs. …”
Publicado 2010
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3122por Corigliano, Mariana G., Maglioco, Andrea, Laguía Becher, Melina, Goldman, Alejandra, Martín, Valentina, Angel, Sergio O., Clemente, Marina“…METHODOLOGY: Plant cytosolic Hsp90 isoforms from Arabidopsis thaliana (AtHsp81.2) and Nicotiana benthamiana (NbHsp90.3) were expressed in E. coli. …”
Publicado 2011
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3123“…Agrobacterium-mediated inoculation of Nicotiana benthamiana with the ToLCPMV clones obtained here did not result in symptoms. …”
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3124por Kumar, Deepak, Patro, Sunita, Ranjan, Rajiv, Sahoo, Dipak K., Maiti, Indu B., Dey, Nrisingha“…In transgenic tobacco (Nicotiana tabaccum, var. Samsun NN) and Arabidopsis plants, the MSgt-FSgt hybrid promoter showed 14.22 and 7.16 times stronger activity compared to CaMV35S promoter respectively. …”
Publicado 2011
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3125por Nishikiori, Masaki, Mori, Masashi, Dohi, Koji, Okamura, Hideyasu, Katoh, Etsuko, Naito, Satoshi, Meshi, Tetsuo, Ishikawa, Masayuki“…Here, we show that a small GTP-binding protein ARL8, along with TOM1, is co-purified with a FLAG epitope-tagged ToMV 180K replication protein from solubilized membranes of ToMV-infected tobacco (Nicotiana tabacum) cells. When solubilized membranes of ToMV-infected tobacco cells that expressed FLAG-tagged ARL8 were subjected to immunopurification with anti-FLAG antibody, ToMV 130K and 180K replication proteins and TOM1 were co-purified and the purified fraction showed RNA-dependent RNA polymerase activity that transcribed ToMV RNA. …”
Publicado 2011
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3126por Vijayapalani, Paramasivan, Chen, Jeff Chien-Fu, Liou, Ming-Ru, Chen, Hsin-Chuan, Hsu, Yau-Heiu, Lin, Na-Sheng“…The phospho-deficient or phospho-mimicking P20 mutant of satBaMV delayed the systemic spread of satBaMV in co-infected Nicotiana benthamiana with BaMV. Thus, satBaMV likely regulates the formation of satBaMV RNP complex during co-infection in planta.…”
Publicado 2012
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3127por Velten, Jeff, Cakir, Cahid, Youn, Eunseog, Chen, Junping, Cazzonelli, Christopher I.“…Transgenic tobacco (Nicotiana tabacum) lines were engineered to ectopically over-express AtMYB90 (PAP2), an R2–R3 Myb gene associated with regulation of anthocyanin production in Arabidopsis thaliana. …”
Publicado 2012
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3128por Xu, Qiu-Fang, Cheng, Wei-Shun, Li, Shuang-Sheng, Li, Wen, Zhang, Zhi-Xin, Xu, You-Ping, Zhou, Xue-Ping, Cai, Xin-Zhong“…Furthermore, the former four genes were essential for Cf-9/Avr9-dependent HCD; NbPip1, NbAsn, and NbMir, but not Nbf4, affected a nonadaptive bacterial pathogen Xanthomonas oryzae pv. oryzae-induced HCD in Nicotiana benthamiana. These data demonstrate that Pip1 and LeMir may play a general role in HCD and plant immunity and that the application of combined proteomic and RNA interfering analyses is an efficient strategy to identify genes required for HCD, disease resistance, and probably other biological processes in plants.…”
Publicado 2012
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3129“…The aim of this study was to isolate and functionally characterize an isoflavone synthase (IFS2_12) from T. repens by expressing it in Nicotiana tabacum (tobacco), a plant which does not naturally produce isoflavonoids. …”
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3130“…In this paper, we describe how expression of AC2 RSS, derived from African cassava mosaic geminivirus changes transcription profile in tobacco (Nicotiana tabacum) leaves and in flowers. RESULTS: Expression of AC2 RSS in transgenic tobacco plants induced clear phenotypic changes both in leaves and in flowers. …”
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3131por Martin, Florian, Bovet, Lucien, Cordier, Audrey, Stanke, Mario, Gunduz, Irfan, Peitsch, Manuel C, Ivanov, Nikolai V“…RESULTS: From the analysis and annotation of the 1,271,256 Nicotiana tabacum fasta and quality files from methyl filtered genomic survey sequences (GSS) obtained from the TGI and ~56,000 ESTs available in public databases, an exon array with 272,342 probesets was designed (four probes per exon) and tested on two selected tobacco varieties. …”
Publicado 2012
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3132“…Previously published temperature responses of Γ* estimated with the Laisk and O(2)-exchange methods in Nicotiana tabacum demonstrated that the Laisk-derived model of Γ* was more sensitive to temperature compared with the O(2)-exchange model. …”
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3133por Herranz, Mari Carmen, Niehl, Annette, Rosales, Marlene, Fiore, Nicola, Zamorano, Alan, Granell, Antonio, Pallas, Vicente“…The majority of the studies investigating gene expression changes in virus-infected plants are limited to interactions between a virus and a model host plant, which usually is Arabidopsis thaliana or Nicotiana benthamiana. In the present work, we performed microarray profiling to explore changes in the expression profile of field-grown Prunus persica (peach) originating from Chile upon single and double infection with Prunus necrotic ringspot virus (PNRSV) and Peach latent mosaic viroid (PLMVd), worldwide natural pathogens of peach trees. …”
Publicado 2013
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3134por Hunter, Lydia J. R., Westwood, Jack H., Heath, Geraldine, Macaulay, Keith, Smith, Alison G., MacFarlane, Stuart A., Palukaitis, Peter, Carr, John P.“…Salicylic acid (SA), an important defensive signal, increases RDR1 gene expression, suggesting that RDR1 contributes to SA-induced virus resistance. In Nicotiana attenuata RDR1 also regulates plant-insect interactions and is induced by another important signal, jasmonic acid (JA). …”
Publicado 2013
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3135por Lee, Jeong-Hwan, Park, Da-Young, Lee, Kyung-Jin, Kim, Young-Kwan, So, Yang-Kang, Ryu, Jae-Sung, Oh, Seung-Han, Han, Yeon-Soo, Ko, Kinarm, Choo, Young-Kug, Park, Sung-Joo, Brodzik, Robert, Lee, Kyoung-Ki, Oh, Doo-Byoung, Hwang, Kyung-A, Koprowski, Hilary, Lee, Yong Seong, Ko, Kisung“…In this study, the expression levels and biological properties of the anti-rabies virus mAb(P) SO57 with or without an endoplasmic reticulum (ER)-retention peptide signal (Lys-Asp-Glu-Leu; KDEL) in transgenic tobacco plants (Nicotiana tabacum) were analyzed. The expression levels of mAb(P) SO57 with KDEL (mAb(P)K) were significantly higher than those of mAb(P) SO57 without KDEL (mAb(P)) regardless of the transcription level. …”
Publicado 2013
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3136por McLellan, Hazel, Boevink, Petra C., Armstrong, Miles R., Pritchard, Leighton, Gomez, Sonia, Morales, Juan, Whisson, Stephen C., Beynon, Jim L., Birch, Paul R. J.“…Silencing of NTP1 or NTP2 in the model host plant Nicotiana benthamiana increases susceptibility to P. infestans, whereas silencing of Pi03192 in P. infestans reduces pathogenicity. …”
Publicado 2013
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3137“…Transmissibility was shown when DOSV systemically infected Nicotiana benthamiana plants. Structure and organization of the domains within the putative replicase of DOSV suggests a common evolutionary origin with ‘potexvirus-like’ replicases of viruses within the Alphaflexiviridae and Tymoviridae, and the CP appears to be ancestral to CPs of allexiviruses (Alphaflexiviridae). …”
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3138por Naya, Loreto, Paul, Sujay, Valdés-López, Oswaldo, Mendoza-Soto, Ana B., Nova-Franco, Bárbara, Sosa-Valencia, Guadalupe, Reyes, José L., Hernández, Georgina“…Transient over-expression of miR398b in Nicotiana benthamiana leaves infected with S. sclerotiorum resulted in enhanced fungal lesions. …”
Publicado 2014
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3139“…Here we report that the Nicotiana benthamiana calmodulin-like protein Nbrgs-CaM is required for the functions of the VSR βC1, the sole protein encoded by the DNA satellite associated with the geminivirus Tomato yellow leaf curl China virus (TYLCCNV). …”
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3140por Lay, Fung T, Poon, Simon, McKenna, James A, Connelly, Angela A, Barbeta, Barbara L, McGinness, Bruce S, Fox, Jennifer L, Daly, Norelle L, Craik, David J, Heath, Robyn L, Anderson, Marilyn A“…CONCLUSIONS: In this report we have described the role of the CTPP on NaD1, a class II defensin from Nicotiana alata flowers. The CTPP of NaD1 is sufficient for vacuolar targeting and plays an important role in detoxification of the defensin as it moves through the plant secretory pathway. …”
Publicado 2014
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