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1.
Plant Cell Rep ; 31(10): 1899-909, 2012 Oct.
Article in English | MEDLINE | ID: mdl-22733208

ABSTRACT

Genetic transformation of the Indian medicinal plant, Bacopa monnieri, using a gene encoding cryptogein, a proteinaceous elicitor, via Ri and Ti plasmids, were established and induced bioproduction of bacopa saponins in crypt-transgenic plants were obtained. Transformed roots obtained with A. rhizogenes strain LBA 9402 crypt on selection medium containing kanamycin (100 mg l(-1)) dedifferentiated forming callus and redifferentiated to roots which, spontaneously showed shoot bud induction. Ri crypt-transformed plants thus obtained showed integration and expression of rol genes as well as crypt gene. Ti crypt-transformed B. monnieri plants were established following transformation with disarmed A. tumefaciens strain harboring crypt. Transgenic plants showed significant enhancement in growth and bacopa saponin content. Bacopasaponin D (1.4-1.69 %) was maximally enhanced in transgenic plants containing crypt. In comparison to Ri-transformed plants, Ri crypt-transformed plants showed significantly (p ≤ 0.05) enhanced accumulation of bacoside A(3), bacopasaponin D, bacopaside II, bacopaside III and bacopaside V. Produced transgenic lines can be used for further research on elicitation in crypt-transgenic plants as well as for large scale production of saponins. Key message The cryptogein gene, which encodes a proteinaceous elicitor is associated with increase in secondary metabolite accumulation-either alone or in addition to the increases associated with transformation by A. rhizogenes.


Subject(s)
Bacopa/genetics , Fungal Proteins/metabolism , Glycosides/biosynthesis , Saponins/biosynthesis , Agrobacterium/genetics , Agrobacterium/metabolism , Bacopa/drug effects , Bacopa/metabolism , Cell Dedifferentiation , Cell Differentiation , Culture Media/metabolism , Fungal Proteins/genetics , Gene Expression Regulation, Plant , Kanamycin/pharmacology , Phytophthora/chemistry , Plant Roots/drug effects , Plant Roots/genetics , Plant Roots/metabolism , Plants, Genetically Modified/genetics , Plants, Genetically Modified/metabolism , Plasmids/genetics , Plasmids/metabolism , Transformation, Genetic , Triterpenes
2.
Plant Cell Rep ; 30(5): 941-54, 2011 May.
Article in English | MEDLINE | ID: mdl-21350825

ABSTRACT

We have developed an efficient transformation system for Bacopa monnieri, an important Indian medicinal plant, using Agrobacterium rhizogenes strains LBA 9402 and A4. Transformed roots induced by strain LBA 9402 spontaneously dedifferentiated to callus while excised roots induced by strain A4 spontaneously showed induction of shoot buds within 10 days. PCR and RT-PCR analysis revealed the presence and expression of the rolAB and rolC genes at the transcription level in pRi A4 transformed cultures indicating that the TL-DNA was integrated retained and expressed in the A4-Ri transformed shoots. Transformed calli showed the presence of rolAB or rol A, TR and ags genes. Transformed plants showed morphological features typically seen in transgenic plants produced by A. rhizogenes. Growth and biomass accumulation was significantly higher in the transformed shoots (twofold) and roots (fourfold) than in the non-transformed (WT) plants. In pRi A4-transformed plants, the content of bacopasaponin D, bacopasaponin F, bacopaside II and bacopaside V was enhanced significantly as compared to WT plants of similar age while bacoside A3 and bacopasaponin C content was comparable with that of WT plants. Significant increase in content of five bacopa saponins could be detected in pRi 9402-transformed callus cultures. There is an overall stimulatory effect on accumulation of bacopa saponins in transformed plants and cells of B. monnieri establishing the role of endogenous elicitation by Ri T-DNA of A. rhizogenes.


Subject(s)
Agrobacterium/genetics , Bacopa/genetics , Saponins/metabolism , Triterpenes/metabolism , Bacopa/growth & development , Bacopa/metabolism , DNA, Bacterial/genetics , Plant Roots/genetics , Plant Roots/growth & development , Plant Roots/metabolism , Plants, Genetically Modified/genetics , Plants, Genetically Modified/growth & development , Plants, Genetically Modified/metabolism , Plants, Medicinal/chemistry , Plants, Medicinal/genetics , Regeneration , Reverse Transcriptase Polymerase Chain Reaction , Saponins/analysis , Saponins/chemistry , Time Factors , Transformation, Genetic , Triterpenes/analysis , Triterpenes/chemistry
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