Advances in Bioscience and Biotechnology

Volume 1, Issue 5 (December 2010)

ISSN Print: 2156-8456   ISSN Online: 2156-8502

Google-based Impact Factor: 1.26  Citations  

Rapid regeneration of stable transformants in cultures of potato by improving factors influencing Agrobacterium-mediated transformation

HTML  Download Download as PDF (Size: 5936KB)  PP. 409-416  
DOI: 10.4236/abb.2010.15054    6,694 Downloads   16,139 Views  Citations

Affiliation(s)

.

ABSTRACT

An efficient and rapid Agrobacterium tumefaciens-mediated transformation protocol was developed to generate activation-tagged mutant lines with the aim of large-scale functional analysis of the potato genome. The explants were inoculated with an Agrobacterium strain harboring the binary plasmid pSKI074 containing four CaMV 35S enhancers in the T-DNA region which activates the downstream genes in the host plant after its integration. Various parameters investigated to increase transformation efficiency were the type and age of explant, cultivar, hormone combinations, preculture of explants, period of co-cultivation with bacteria and concentration of bacterial cultures used for transformation. Stem explants from 5 week old plantlets of cv. Bintje which had undergone phytohormone pretreatment for 4 days, inoculation with diluted bacterial concentration of OD600 = 0.2 containing acetosyringone followed by 2 days of co-cultivation and selection in media with IAA and trans-zeatin all helped in greatly improving the transformation efficiency. The total time required from infection to rooted shoots was 6-7 weeks. Initial evidence for stable integration and expression of the transgenes by PCR analysis showed that over 93% of the regenerated lines were transgenic and this was confirmed by Southern hybridization.

Share and Cite:

Chakravarty, B. and Wang-Pruski, G. (2010) Rapid regeneration of stable transformants in cultures of potato by improving factors influencing Agrobacterium-mediated transformation. Advances in Bioscience and Biotechnology, 1, 409-416. doi: 10.4236/abb.2010.15054.

Cited by

[1] Transformasi Gen Hd3a pada Tanaman Kentang (Solanum tuberosum L.) Kultivar IPB CP (Chip Potato) 1 melalui Agrobacterium tumefaciens
Fruitset Sains: Jurnal Pertanian Agroteknologi, 2023
[2] Solanum okadae-A wild diploid potato species with the potential to improve cultivated potato
2022
[3] INTRODUKSI GEN Hd3a DENGAN PROMOTOR 35S CaMV PADA TANAMAN KENTANG (Solanum tuberosum L.) KULTIVAR IPB CP (CHIP POTATO) 1 MELALUI …
Jurnal Sapta Agrica, 2022
[4] State of the Art of Genetic Engineering in Potato: From the First Report to Its Future Potential
Frontiers in Plant …, 2022
[5] Detection Of New Strains Of Weeds Associated With Wheat For The First Time In Iraq
Gburi, BKH Al-Gburi - NVEO-NATURAL VOLATILES & …, 2021
[6] تأثیر تنظیم‌کننده‌های رشد سیتوکینینی بر باززایی مستقیم پنج رقم سیب‌زمینی‎
2019
[7] Effect of Cytokinins on Direct Regeneration of Five Potato Cultivars
2019
[8] تأثیر تنظیمکنندههاي رشد سیتوکینینی بر باززایی مستقیم پنج رقم سیبزمینی‎
Journal of Crop …, 2019
[9] The morphogenic potential of Siberian potato cultivars in tissue cultures.
… Zbreve˜ urnal Genetiki …, 2018
[10] Transient Transformation of Potato Plant (Solanum tuberosum L.) Granola Cultivar Using Syringe Agroinfiltration
2018
[11] Морфогенетический потенциал сортов картофеля сибирской селекции в культуре in vitro
2018
[12] Agrobacterium-mediated transformation systems of Primula vulgaris
2018
[13] اثر زمآن‌های مایه‌کوبی و غلظت‌های استوسیرینگون بر کارایی انتقال ژن بتا گلوکورونیداز (GUS) با میانجیگری آگروباکتریوم در گل ژربرا (Gerbera jamesonii cv.' …‎
2018
[14] Expression of recombinant Cry 1Ac protein in potato plant cell suspension culture: Establishment of culture and optimization ofbiomass and protein production by nitrogen supply
Dyna, 2017
[15] Biosciences and Plant Biology
2017
[16] Hairy Root Induction on Justicia gendarussa by Various Density of Agrobacterium rhizogenes strain LB 510
2017
[17] Expression ofrecombinant Cry 1Ac protein in potato plant cell suspension culture:: Establishment of culture and optimization of biomass and protein production by …
Dyna, 2017
[18] Expresión de la proteína recombinante Cry 1Ac en cultivos de células de papa en suspensión: Establecimiento del cultivo y optimización de la producción de la …
DYNA, 2017
[19] Expression of recombinant Cry 1Ac protein in potato plant cell suspension culture: Establishment of culture and optimization of biomass and protein …
DYNA, 2017
[20] Introduction of Hd3a gene in IPB CP1 potato cultivar through Agrobacterium tumefaciens-mediated transformation under the control of use 35S CaMV promoter
Pakistan Journal of Biotechnology, 2017
[21] Transformation of Thionin genes using chitosan nanoparticle into potato plant to be resistant to fungal infection
2017
[22] Expresión de la proteína recombinante Cry 1Ac en cultivos de células de papa en suspensión: Establecimiento del cultivo y optimización de la producción de …
López, JM Muñoz-Pérez, LF Granger-Serrano… - Dyna, 2017
[23] Perakitan Kentang (Solanum Tuberosum L.) Kultivar Nooksack Transgenik Yang Mengandung Gen Hd3a
Dissertations and Theses, 2016
[24] PRODUCTION OF TRANSGENIC CUCUMBER PLANTLETS CON-TAINING SEQUENCES FROM WATERMELON MOSAIC VIRUS-II FUSED WITH GFP GENE
Egyptian Journal of Genetics And Cytology, 2016
[25] Direct shoot organogenesis and Agrobacterium tumefaciens mediated transformation of Solanum trilobatum L.
Turkish Journal of Biology, 2016
[26] 携病毒马铃薯茎尖分化成苗与脱毒率检测
西北植物学报, 2015
[27] Potato (Solanum tuberosum L.)
Agrobacterium Protocols, 2015
[28] Germin-like protein 2 gene promoter from rice is responsive to fungal pathogens in transgenic potato plants
Functional & integrative genomics, 2015
[29] Cyanamide hydratase as selectable marker in potato
Plant Cell, Tissue and Organ Culture (PCTOC), 2014
[30] In vitro Regeneration and Agrobacterium-mediated Transformation of Potato (Solanum tuberosum L.) Cultivars Grown in Mexico
Plant Tissue Culture and Biotechnology, 2013
[31] Comparison of regeneration efficiency of the Indian potato cultivars during agrobacterium-mediated genetic transformation
2012
[32] Production of transgenic cucumber plantlets containing sequences from watermelon mosaic virus-II fused with gfp gene
2012

Copyright © 2025 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.