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Dive into the research topics where Dong Poh Chin is active.

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Featured researches published by Dong Poh Chin.


Plant Cell Reports | 2006

Production of marker-free transgenic Nierembergia caerulea using MAT vector system

Raham Sher Khan; Dong Poh Chin; Ikuo Nakamura; Masahiro Mii

Agrobacterium tumefaciens strain EHA105 harboring an ipt-type MAT vector, pNPI132, was used to produce morphologically normal transgenic Nierembergia caerulea cv. Mont Blanc employing ipt gene as the selectable marker gene. β-glucuronidase (GUS) gene was used as model gene of interest. The MAT vector system is a positive selection system that gives the advantage of regeneration to the transgenic cells without killing the non-transgenic cells. Infected explants were cultured on hormone- and antibiotic-free MS medium, and 65% of the regenerated shoots developed ipt shooty phenotype-morphologically abnormal shoots, within approximately 3 months after co-cultivation. Twenty morphologically normal shoots were produced from 12 transgenic ipt shoots 7 months after co-cultivation. The normal shoots rooted well on hormone-free MS medium. Ninety percent of the normal shoots were ipt−, GUS+ and excision+ as determined by PCR and Southern blot analyses. These results indicate that ipt-type MAT vector system can be used successfully in Nierembergia to produce marker-free transgenic plants without using phytohormones and selective chemical agents.


Plant Cell Reports | 2011

Production of marker-free disease-resistant potato using isopentenyl transferase gene as a positive selection marker

Raham Sher Khan; Valentine Otang Ntui; Dong Poh Chin; Ikuo Nakamura; Masahiro Mii

The use of antibiotic or herbicide resistant genes as selection markers for production of transgenic plants and their continuous presence in the final transgenics has been a serious problem for their public acceptance and commercialization. MAT (multi-auto-transformation) vector system has been one of the different strategies to excise the selection marker gene and produce marker-free transgenic plants. In the present study, ipt (isopentenyl transferase) gene was used as a selection marker gene. A chitinase gene, ChiC (isolated from Streptomyces griseus strain HUT 6037) was used as a gene of interest. ChiC gene was cloned from the binary vector, pEKH1 to an ipt-type MAT vector, pMAT21 by gateway cloning and transferred to Agrobacteriumtumefaciens strain EHA105. The infected tuber discs of potato were cultured on hormone- and antibiotic-free MS medium. Seven of the 35 explants infected with the pMAT21/ChiC produced shoots. The same antibiotic- and hormones-free MS medium was used in subcultures of the shoots (ipt like and normal shoots). Molecular analyses of genomic DNA from transgenic plants confirmed the integration of gene of interest and excision of the selection marker in 3 of the 7 clones. Expression of ChiC gene was confirmed by Northern blot and western blot analyses. Disease-resistant assay of the marker-free transgenic, in vitro and greenhouse-grown plants exhibited enhanced resistance against Alternaria solani (early blight), Botrytis cinerea (gray mold) and Fusarium oxysporum (Fusarium wilt). From these results it could be concluded that ipt gene can be used as a selection marker to produce marker-free disease-resistant transgenic potato plants on PGR- and antibiotic-free MS medium.


Biotechnology Letters | 2011

Increased resistance to cucumber mosaic virus (CMV) in Lilium transformed with a defective CMV replicase gene

Pejman Azadi; Ntui Valentaine Otang; Hasthanasombut Supaporn; Raham Sher Khan; Dong Poh Chin; Ikuo Nakamura; Masahiro Mii

Lilium cv Acapulco was transformed with a defective cucumber mosaic virus (CMV) replicase gene (CMV2-GDD) construct using Agrobacterium tumefaciens. Four lines were analyzed for gene expression and resistance to CMV-O strain. Expression of the CMV2-GDD gene in the transgenic plants was confirmed by reverse transcription PCR (RT-PCR). When these four lines were mechanically inoculated with CMV-O, no signal of coat protein (CP) messages using RT-PCR was detected in newly produced leaves of two transgenic lines. Dot-immunobinding assay (DIBA) of CP was performed to examine the presence of the CMV in the newly produced leaves of challenged plants. Results, similar to those obtained with RT-PCR of the CP messages, were observed in DIBA. Therefore, our results imply that the two lines show increased levels of resistance to CMV, and CMV-GDD replicase gene is an effective construct that has protection against CMV in Lilium.


Plant Cell Tissue and Organ Culture | 2009

Isopentenyl transferase gene expression offers the positive selection of marker-free transgenic plant of Kalanchoe blossfeldiana

Gunaratnam Thirukkumaran; Raham Sher Khan; Dong Poh Chin; Ikuo Nakamura; Masahiro Mii

The technologies allowing the production of transgenic plants without selectable marker genes, is of great interest in public and environmental safety. For generating such marker-free transgenic plants, possibility has been offered by Multi-Auto-Transformation [MAT] vector system, which combines positive selection, using the isopentenyl transferase (ipt) gene, with a site-specific recombination that generates marker-free plants. In this study Agrobacterium tumefaciens strain EHA105 harboring an ipt-type MAT vector, pMAT21, containing lacZ, gus genes and the removable cassette in the T-DNA region was used to produce marker-free transgenic Kalanchoe blossfeldiana Poelln., employing ipt gene as the selectable marker gene. Co-cultivated explants were cultured on hormone- and selective agent-free MS medium, and 85% of the regenerated shoots showed ipt-shooty phenotype with GUS expression. Forty-one morphologically normal shoots were produced during the subculture. More than ninety percent of the normal shoots were ipt−, gus− but lacZ+ as determined by PCR analyses. These results indicate that the ipt phenotype was clearly distinguishable from non-transgenic as well as transgenic marker-free shoots. This study opens interesting perspective for the generation of marker-free transgenic K. blossfeldiana with objective useful transgene.


Plant Cell Reports | 2005

Agrobacterium-mediated transformation of Phalaenopsis by targeting protocorms at an early stage after germination.

Kei-ichiro Mishiba; Dong Poh Chin; Masahiro Mii


Plant Cell Tissue and Organ Culture | 2010

Macro elements in inoculation and co-cultivation medium strongly affect the efficiency of Agrobacterium-mediated transformation in Lilium

Pejman Azadi; Dong Poh Chin; Kiyo Kuroda; Raham Sher Khan; Masahiro Mii


Plant Biotechnology | 2006

Transgenic Phalaenopsis plants with resistance to Erwinia carotovora produced by introducing wasabi defensin gene using Agrobacterium method

Rinaldi Sjahril; Dong Poh Chin; Raham Sher Khan; Saburo Yamamura; Ikuo Nakamura; Yoshimiki Amemiya; Masahiro Mii


Plant Cell Reports | 2008

Importance of co-cultivation medium pH for successful Agrobacterium-mediated transformation of Lilium × formolongi

M. Ogaki; Y. Furuichi; K. Kuroda; Dong Poh Chin; Yoichi Ogawa; Masahiro Mii


Plant Cell Reports | 2007

Agrobacterium-mediated transformation of protocorm-like bodies in Cymbidium.

Dong Poh Chin; Kei-ichiro Mishiba; Masahiro Mii


Plant Biotechnology Reports | 2010

Metabolic engineering of Lilium × formolongi using multiple genes of the carotenoid biosynthesis pathway

Pejman Azadi; Ntui Valentaine Otang; Dong Poh Chin; Ikuo Nakamura; Masaki Fujisawa; Hisashi Harada; Norihiko Misawa; Masahiro Mii

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