Showing 1,141 - 1,160 results of 1,418 for search '"Agrobacterium"', query time: 0.09s Refine Results
  1. 1141

    Influence of bacterial inoculation on growth and plant nutrition of peach grafted in different rootstocks in calcareous soil by İpek, Muzaffer, Arıkan, Şeyma, Eşitken, Ahmet, Pırlak, Lütfi, Dönmez, Mesude Figen, Turan, Metin

    Published 2021
    “…To overcome the negative effect of calcareous soil, six bacterial strains namely Alcaligenes 637Ca, Agrobacterium A18, Staphylococcus MFDCa1, Staphylococcus MFDCa2, Bacillus M3, and Pantoea FF1 were inoculated in one-year-old plants of peach cultivar ‘Elegant Lady’ grafted onto GF677 and Nemaguard rootstocks. …”
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    Article
  2. 1142

    Storage root nutrient and yield enhancement in sweet potato variety vitato using empty fruit bunch compost and hexaconazole by Borhan Abdul Haya @ Yahya, Mohd Yusoff Abdullah, Nur Kharunisa Tajarudin

    Published 2016
    “…MALDI-TOF analysis identified six species from the isolates: Enterobacter cloacae complex (57.9%), Ralstonia pickettii (10.5%), Agrobacterium tumefaciens (10.5%), Bacillus pumilus (10.5%), Stenotrophomonas maltophilia (5.3%) and Serratia marcescens (5.3%). …”
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  3. 1143
  4. 1144

    Metal inducible activity of the oil palm metallothionein-like gene promoter (MT3-A) in prokaryotes. by Kamaladini, Hossein, Abdullah, Siti Nor Akmar, Abdul Aziz, Maheran

    Published 2011
    “…Vector constructs containing MT3-A promoter with (W1MT3-A) and without (W2MT3-A) five prime untranslated region (5'-UTR) fused to ß-glucuronidase (GUS) gene in pCAMBIA 1304 vector were produced. 5'-rapid amplification of cDNA ends (RACE) using mRNA isolated from Escherichia coli and Agrobacterium tumefaciens harboring W1MT3-A confirmed that fusion transcripts of MT3-A 5'-UTR-GUS were successfully produced in both bacteria. …”
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    Article
  5. 1145

    Molecular cloning and functional studies of silicon-responsive serine-rich protein transcripts from mangrove plant, rhizophora apiculata (Blume) by Sahebi, Mahbod

    Published 2014
    “…Transformation of Arabidopsis thaliana with serine-rich protein gene was performed using Agrobacterium-mediated transformation by the floral-dip method. …”
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    Thesis
  6. 1146

    Functional analysis of Arabidopsis thaliana 1-aminocyclopropane-1-carboxylic acid oxidase gene in response to limited water by Ismawanto, Sigit

    Published 2013
    “…The over-expression construct was generated by using the Gateway technology and introduced into Arabidopsis by the Agrobacterium-mediated floral dip method. From nine AtACS genes, only AtACS2 and AtACS6 responded to the PEG-induced water stress. …”
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    Thesis
  7. 1147

    Overexpression of a gene encoding LRR protein improves rice resistance against Magnaporthe oryzae by Azizi, Parisa, Yusop, Mohd Rafii, Abdullah, Siti Nor Akmar, Musa, Mohamed Hanafi, Sahebi, Mahbod

    Published 2017
    “…Thus, a full coding DNA sequence (CDS) of the Pikh gene, 1206 bp in length, was obtained through amplifying the cDNA template from a PH9-resistant rice variety using a specific primer. Agrobacterium-mediated transformation technology was also used to introduce the Pikh gene into the MR219 callus. …”
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    Conference or Workshop Item
  8. 1148
  9. 1149

    Hyoscyamine and scopolamine production in transformed root cultures of Datura metel L by Ahmad, Aziz

    Published 2000
    “…The transformed root cultures of Datura metel L (kecubung) was successfully established via Agrobacterium rhizogenes-mediated, which contained the pBI 121 plasmid harbouring the GUS and kanamycin coding genes. …”
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    Thesis
  10. 1150
  11. 1151

    Overexpression of <i>PvFAD3</i> Gene from <i>Plukenetia volubilis</i> Promotes the Biosynthesis of α-Linolenic Acid in Transgenic Tobacco Seeds by Guo Liu, Zhihua Wu, Xiuhua Shang, Yan Peng, Liqiong Gao

    Published 2022-02-01
    “…Seed-specific overexpression vectors were constructed, and <i>Agrobacterium</i>-mediated genetic transformation was performed to obtain transgenic tobacco plants overexpressing <i>PvFAD3</i>. …”
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    Article
  12. 1152

    &lt;b&gt;CARACTERIZAÇÃO DO POTENCIAL ANTIMICROBIANO DOS EXTRATOS DE PÓLEN APÃCOLA DA REGIÃO SUL DO BRASIL&lt;/b&gt; by SOLANGE TERESINHA CARPES, INGRIDY SIMONE RIBEIRO CABRAL, PEDRO LUIZ ROSALEN, SEVERINO MATIAS DE ALENCAR, MARIA LúCIA MASSON

    Published 2009-12-01
    “…Nesses testes foram utilizados nove microorganismos (Bacillus subitilis ATCC 21.332, Pseudomonas aeruginosa ATCC 15.442, Streptococcus mutans Ingbritt 1600, Staphylococcus aureus ATCC 25.923, Klebsiella pneumoniae, Agrobacterium tumefaciens, Xanthomonas vesicatoria pv vesicatoria, Xanthomonas axonopodis pv. vesicatoria e Pseudomonas syringae pv. tomato). …”
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    Article
  13. 1153

    Host-induced silencing of MpPar6 confers Myzus persicae resistance in transgenic rape plants by Qi Zhang, Wenqin Zhan, Chao Li, Ling Chang, Yi Dong, Jiang Zhang

    Published 2024-01-01
    “…We next generated transgenic rape plants expressing dsPar6 by Agrobacterium-mediated transformation and obtained nine independent transgenic lines. …”
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    Article
  14. 1154

    Polyphenol Rich <em>Ajuga bracteosa</em> Transgenic Regenerants Display Better Pharmacological Potential by Samina Rubnawaz, Waqas Khan Kayani, Nosheen Akhtar, Rashid Mahmood, Asif Khan, Mohammad K. Okla, Saud A. Alamri, Ibrahim A. Alaraidh, Yasmeen A. Alwasel, Bushra Mirza

    Published 2021-08-01
    “…We transformed the <i>A. bracteosa</i> plant with <i>rol</i> genes of <i>Agrobacterium rhizogenes</i> and raised the regenerants from the hairy roots. …”
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    Article
  15. 1155

    Breeding of virus-resistant transgenic sugarcane by the integration of the Pac1 gene by Wenzhi Wang, Wenzhi Wang, Jungang Wang, Xiaoyan Feng, Llinbo Shen, Cuilian Feng, Tingting Zhao, Hong Xiao, Shifang Li, Shuzhen Zhang

    Published 2022-08-01
    “…After that, the Pac1 gene was ligated to a plant expression vector and was then introduced into a virus-sensitive sugarcane cultivar by using Agrobacterium tumefaciens-mediated transformation method. …”
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    Article
  16. 1156

    The AP2/ERF Transcription Factor PgERF120 Regulates Ginsenoside Biosynthesis in Ginseng by Yang Jiang, Qi Zhang, Zixia Zeng, Yi Wang, Mingzhu Zhao, Kangyu Wang, Meiping Zhang

    Published 2024-03-01
    “…Ginseng adventitious roots were transformed using the <i>Agrobacterium tumefaciens</i>-mediated method to obtain transgenic ginseng hairy roots, and the gene expression, ginsenoside content and malondialdehyde content in overexpression-positive hairy roots were also analyzed. …”
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    Article
  17. 1157

    Genome Analysis of <i>Phytophthora nicotianae</i> JM01 Provides Insights into Its Pathogenicity Mechanisms by Xiao-Long Yuan, Cheng-Sheng Zhang, Fan-Yu Kong, Zhong-Feng Zhang, Feng-Long Wang

    Published 2021-08-01
    “…In addition, transient expression was performed on <i>Nicotiana benthamiana</i> by infiltrating with <i>Agrobacterium tumefaciens</i> cells containing a cysteine-rich (SCR) protein. …”
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    Article
  18. 1158

    Micropropagation of Rare <i>Scutellaria havanensis</i> Jacq. and Preliminary Studies on Antioxidant Capacity and Anti-Cancer Potential by Lani Irvin, Yarelia Zavala Ortiz, Kamila Rivera Rivera, Brajesh Nanda Vaidya, Samantha H Sherman, Rosalinda Aybar Batista, Juan A. Negrón Berríos, Nirmal Joshee, Alok Arun

    Published 2021-09-01
    “…We also report preliminary evidence of <i>Agrobacterium tumefaciens</i> EHA105-mediated gene transfer transiently expressing the green fluorescent protein in this species. …”
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    Article
  19. 1159

    Increasing the level of resistant starch in ‘Presidio’ rice through multiplex CRISPR–Cas9 gene editing of starch branching enzyme genes by Sudip Biswas, Oneida Ibarra, Mariam Shaphek, Marco Molina‐Risco, Mayra Faion‐Molina, Marcela Bellinatti‐Della Gracia, Michael J. Thomson, Endang M. Septiningsih

    Published 2023-06-01
    “…The CRISPR–Cas9 vector construct with four SBE gene sgRNAs was transformed into the U.S. rice cultivar Presidio using Agrobacterium‐mediated transformation. Knockout mutations were identified at all four SBE genes across eight transgene‐positive T0 plants. …”
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    Article
  20. 1160

    Targeting Disease Susceptibility Genes in Wheat Through wide Hybridization with Maize Expressing Cas9 and Guide RNA by Anil Karmacharya, Dandan Li, Yueqiang Leng, Gongjun Shi, Zhaohui Liu, Shengming Yang, Yang Du, Wenhao Dai, Shaobin Zhong

    Published 2023-09-01
    “…The constructed binary vectors were used to transform the hybrid maize Hi-II through an Agrobacterium-mediated approach to generate T0 and T1 plants, which were used to cross with wheat variety Dayn for targeting Tsn1 or the susceptible allele (TaHRC-S) of TaHRC as well as with the near-isogenic line (Day-Fhb1) of Dayn for targeting the resistant allele (TaHRC-R) of TaHRC. …”
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